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yeast s cerevisiae atcc  (ATCC)


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    Structured Review

    ATCC yeast s cerevisiae atcc
    Yeast S Cerevisiae Atcc, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 33 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/yeast+s+cerevisiae+atcc/Saccharomyces+cerevisiae+Meyen+ex+E%2EC%2E+Hansen/pm41599303-115-19-22
    Average 94 stars, based on 33 article reviews
    yeast s cerevisiae atcc - by Bioz Stars, 2026-09
    94/100 stars

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    Derivatization:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    Protein Extraction:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    Protein Concentration:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    Extraction:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    Cell Culture:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    SDS Page:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    Expressing:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.

    Control:

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis .
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [19] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se4+/L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: The Effect of Selenium Supplementation on Amino Acid Accumulation by the Yeast Saccharomyces cerevisiae and Rhodotorula glutinis
    Article Snippet: Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.Such a low level may indicate significant deficiencies of limiting amino acids, which is confirmed by low CS values for leucine and lysine.. Studies conducted by Kieliszek et al. [ ] provide valuable information on the effect of selenium on the proteome of yeast S. cerevisiae ATCC MYA-2200.. In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).In conditions of selenium supplementation (20 mg Se 4+ /L), changes in the expression level of many proteins related to cellular metabolism were observed, including mitochondrial malate dehydrogenase (MDH), ATP-dependent RNA helicase (dbp3), and tryptophan synthase (Trp-DMAT).

    Article Title: Biotransformation of Selenium in Yeast-Speciation and Nanostructural Analysis.
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se4+/g, respectively.. In another publication by Kieliszek et al. [29], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se4+/L, the yeast accumulated 1600 and 3000 μg Se4+/g, respectively.

    Article Title: Biotransformation of Selenium in Yeast—Speciation and Nanostructural Analysis
    Article Snippet: In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.In the case of fungi Meyerozyma guilliermondii ATCC 6260 and Trichosporon cutaneum LOCK 0254 grown in an environment containing sodium selenite (IV) at a dose of 50 μM/L, the content of this element in the biomass was 12.23 and 67.26 μg Se 4 +/g, respectively.. In another publication by Kieliszek et al. [ ], selenium removal from the substrate by the biomass of the yeast S. cerevisiae ATCC MYA-2200 was described.. After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.After 72 h of cultivation in the substrate, adding 10 and 20 mg Se 4 +/L, the yeast accumulated 1600 and 3000 μg Se 4 +/g, respectively.

    Article Title: Effect of selenium and methods of protein extraction on the proteomic profile of Saccharomyces yeast
    Article Snippet: In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.In this study, the results obtained showed that the dynamic changes in the proteome in response to the conditions of selenium in the experimental medium are directly related to the transcription, translation, and metabolism in yeast cells.. In the yeast S. cerevisiae ATCC MYA-2200 obtained after cultivation in a medium with the addition of selenium, an excessive abundance of the following proteins was found: mitochondria MDH, ATP-dependent RNA helicase dbp3, tryptophan dimethylallyltransferase (Trp-DMAT), and proteins that can be alanyl-tRNA editing protein AlaX.. Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.Literature data indicate [ ] that MDH catalyses the pyridine nucleotide-dependent conversion of malate and oxaloacetate in the tricarboxylic acid cycle.



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