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2 de system  (Cytiva Europe)


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    Structured Review

    Cytiva Europe 2 de system
    The <t>2-DE</t> proteome images of control (A) and RC-treated (B) platelets. The differentially expressed protein spots were shown by the arrows.
    2 De System, supplied by Cytiva Europe, used in various techniques. Bioz Stars score: 93/100, based on 11 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/2+de+buffer/2-D+Protein+Extraction+Buffer-I/pmc07011957-110-8-7
    Average 93 stars, based on 11 article reviews
    2 de system - by Bioz Stars, 2026-09
    93/100 stars

    Images

    1) Product Images from "Differential proteomic analysis of platelets suggested target-related proteins in rabbit platelets treated with Rhizoma Corydalis"

    Article Title: Differential proteomic analysis of platelets suggested target-related proteins in rabbit platelets treated with Rhizoma Corydalis

    Journal: Pharmaceutical Biology

    doi: 10.1080/13880209.2016.1229340

    The 2-DE proteome images of control (A) and RC-treated (B) platelets. The differentially expressed protein spots were shown by the arrows.
    Figure Legend Snippet: The 2-DE proteome images of control (A) and RC-treated (B) platelets. The differentially expressed protein spots were shown by the arrows.

    Techniques Used:

    Related Articles

    Stripping Membranes:

    Article Title: Rock-dependent calponin 3 phosphorylation regulates myoblast fusion.
    Article Snippet: Myogenesis occurs during embryonic development as well as regeneration following postnatal muscle fiber damage.. Herein, we show that acidic calponin or calponin 3 (CNN3) regulates both myoblast cell fusion and muscle-specific gene expressions.. Overexpression of CNN3 impaired C2C12 cell fusion, whereas CNN3 gene knockdown promoted skeletal myosin expression and fusion.

    Article Title: Identification of differentially expressed proteins in Ficedula flycatchers.
    Article Snippet: This is the first report on the large-scale identification and comparison of proteins in non-model organisms, Ficedula flycatchers.. It highlights the potential of proteomics approaches in both nonsequenced and non-model organisms for identification of differentially expressed proteins.. Not surprisingly, more than 55% of the proteins failed to be identified even though the MS spectra were of high quality.

    Article Title: Calponin 3 Regulates Actin Cytoskeleton Rearrangement in Trophoblastic Cell Fusion
    Article Snippet: .. The pellet was solubilized in 2-DE buffer (7M urea, 2M thiourea and 4% CHAPS), and a 40 g sample was subjected to 2-DE using an Molecular Biology of the Cell3974 IPG strip (13 cm, pH4-7L) (GE Healthcare) for the first dimension separation. ..

    Article Title: Calponin 3 Regulates Actin Cytoskeleton Rearrangement in Trophoblastic Cell Fusion
    Article Snippet: .. The pellet was solubilized in 2-DE buffer (7M urea, 2M thiourea and 4% CHAPS), and a 40 μg sample was subjected to 2-DE using an IPG strip (13 cm, pH4-7L) (GE Healthcare) for the first dimension separation. ..

    Two-Dimensional Gel Electrophoresis:

    Article Title: Evaluation of protein extraction methods for enhanced proteomic analysis of tomato leaves and roots.
    Article Snippet: .. TWO-DIMENSIONAL GEL ELECTROPHORESIS First-dimension separation was carried out using immobilized pH gradient IPG strips for isoelectric focusing – IEF (18 cm length, pH 3-10 NL, Immobiline DryStrip, GE Healthcare, Freiburg, Germany), rehydrated overnight with 2-DE buffer (7 M Urea, 2 M Thiourea, 4% Chaps, 0.5% Triton X-100, 50 mM DTT, 2% IPG and 0.5% Bromophenol blue) containing 500 μg and 800 μg of leaf and root protein, respectively, resulting in a final volume of 375 μL. .. IEF was performed at 20 °C using an Ettan IPGphor 3 IEF system (GE Healthcare, Freiburg, Germany) testing 2 protocols: a) Amalraj et al. (2010) modified nonlinear increase – 4h rehydration, step-n-hold at 30 V for 12h (step 1), step-n-hold at 100 V for 1h (step 2), step-n-hold at 200 V for 1h (step 3), step-n-hold at 400 V for 1h (step 4), step-n-hold at 700 V for 1h (step 5), step-n-hold at 1000 V for 1h (step 6), step-n-hold at 5000 V for 10h (step 7), step-n-hold at 8000 V for 4h (step 8), step-n-hold at 100 V for 3h (step 9); b) Saravanan and Rose (2004) modified nonlinear increase – 1h rehydration, 0 to 30 V over 12h (step 1), 30 to 150 V over 1h (grad 2), 150 to 300 V over 1h (grad 3), 300 to 500 V over 1h (grad 4), 500 to 3000 V over 2h (grad 5), 3000 to 6000 V over 2h (grad 6), 6000 to 10000 V over 2h (grad 7), and then held at 10000 V for 7h (step 8).

    Electrofocusing:

    Article Title: Evaluation of protein extraction methods for enhanced proteomic analysis of tomato leaves and roots.
    Article Snippet: .. TWO-DIMENSIONAL GEL ELECTROPHORESIS First-dimension separation was carried out using immobilized pH gradient IPG strips for isoelectric focusing – IEF (18 cm length, pH 3-10 NL, Immobiline DryStrip, GE Healthcare, Freiburg, Germany), rehydrated overnight with 2-DE buffer (7 M Urea, 2 M Thiourea, 4% Chaps, 0.5% Triton X-100, 50 mM DTT, 2% IPG and 0.5% Bromophenol blue) containing 500 μg and 800 μg of leaf and root protein, respectively, resulting in a final volume of 375 μL. .. IEF was performed at 20 °C using an Ettan IPGphor 3 IEF system (GE Healthcare, Freiburg, Germany) testing 2 protocols: a) Amalraj et al. (2010) modified nonlinear increase – 4h rehydration, step-n-hold at 30 V for 12h (step 1), step-n-hold at 100 V for 1h (step 2), step-n-hold at 200 V for 1h (step 3), step-n-hold at 400 V for 1h (step 4), step-n-hold at 700 V for 1h (step 5), step-n-hold at 1000 V for 1h (step 6), step-n-hold at 5000 V for 10h (step 7), step-n-hold at 8000 V for 4h (step 8), step-n-hold at 100 V for 3h (step 9); b) Saravanan and Rose (2004) modified nonlinear increase – 1h rehydration, 0 to 30 V over 12h (step 1), 30 to 150 V over 1h (grad 2), 150 to 300 V over 1h (grad 3), 300 to 500 V over 1h (grad 4), 500 to 3000 V over 2h (grad 5), 3000 to 6000 V over 2h (grad 6), 6000 to 10000 V over 2h (grad 7), and then held at 10000 V for 7h (step 8).

    Centrifugation:

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    Article Snippet: Wild watermelon (Citrullus lanatus) is a xerophyte native to the Kalahari Desert, Africa.. To better understand the molecular mechanisms of drought resistance in this plant, we examined changes in the proteome in response to water deficit.. Wild watermelon leaves showed decreased transpiration and a concomitant increase in leaf temperature under water deficit conditions.



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    Effect of glucose on the mRNA and protein expression of TvLEGU-2. ( A ) qPCR with specific primers for the tvlegu-2 and α-tubulin genes using 100 ng of cDNA from parasites grown in glucose restriction (GR) and high-glucose (HG) conditions. α-tubulin was used as a normalizing gene; ns, no significant differences. ( B ) Western blot assay of PREs from parasites grown under GR (<1 mM) and HG (50 mM). Coomassie Brilliant-Blue (CBB)-stained 10% SDS PAGE gel for PREs from parasites grown under GR and HG conditions (Lanes 2 and 3), respectively. For WB assays, duplicate gels were transferred onto NC membranes and incubated with different antibodies: Rα-TvLEGU-2pep (1:500 dilution) to detect the TvLEGU-2 protein, Rα-TvCP2r (1:6000 dilution) to detect a control protein overexpressed under GR conditions, Rα-TvTIM (1:1000 dilution) to detect an overexpressed TvTIM control protein under HG conditions, and a negative control with PI serum or no primary antibody (−). Arrowheads show the position of the native TvLEGU-2 (∼55, ∼49, ∼34, and ∼29 kDa) protein bands. ( C ) Silver-stained <t>2-DE</t> protease-rich extracts from parasites grown in normal glucose conditions (25 mM) ( Ca ). WB of duplicate gels transferred onto NC membranes incubated with Rα-TvLEGU-1r (1:1000 dilution) antibody ( Cc ) to serve as a control for the specificity of Rα-TvLEGU-2pep antibody against other legumain proteins, Rα-TvLEGU-2pep (1:100 dilution) ( Cd ) to detect the TvLEGU-2 protein in PREs, or a negative control with PI serum or no primary antibody (−) ( Cb ). Arrowheads show the position of the native TvLEGU-2 (∼34 and ∼29 kDa) proteins. ( D ) Coomassie Brilliant Blue-stained, purified recombinant TvLEGU-1r protein (CBB; Lane 1). WB assays of TvLEGU-1r incubated with Rα-TvLEGU-1r (1:3000 dilution) (Lane 3), or Rα-TvLEGU-2pep (1:1000 dilution) (Lane 4) antibody or PI serum or only the secondary antibody as a negative control (−) (Lane 2). Arrowhead points to the recombinant protein band TvLEGU-1r (∼46 kDa). ( E ) Coomassie Brilliant Blue-stained, purified recombinant TvLEGU-2r protein (CBB; Lane 1). WB assays of TvLEGU-2r incubated with Rα-TvLEGU-2pep (1:1000 dilution) (Lane 4), or Rα-TvLEGU-1r (1:3000 dilution) (Lane 3) antibody, or PI serum or only the secondary antibody as a negative control (−) (Lane 2). Arrowhead points to the recombinant protein band TvLEGU-2r (∼85 kDa). kDa, molecular weight markers in kilodaltons (Bio-Rad).
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    The <t>2-DE</t> proteome images of control (A) and RC-treated (B) platelets. The differentially expressed protein spots were shown by the arrows.
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    Figure 1 Identification of the BaMV-induced proteins in the S100 fraction. A, Genome of BaMV. B, Schematic representations of infectious con- structs which were BaMV-derived in this study. pKn, a binary vector which can express foreign genes driven by the upstream double 35S promoter of cauliflower mosaic virus. It also has a nopaline synthase (Nos) terminator. pKB, which has an infectious full-length BaMV construct in the pKn vector. pKB GFP, has a GFP ORF downstream of TGBp3, which was driven by the same promoter as CP. pKB GFP-2a-CP, GFP, and CP are linked with a 2a protein. <t>C,</t> <t>2-DE</t> analysis of S100 fractions from vector- or BaMV-inoculated N. benthamiana. S100 fractions were extracted at 7 dpi. The proteins from S100 were separated by 2-DE analysis and the excised differentiated dots (indicated as numbers) were analyzed by LC–MS/MS. Agrobacterium tumefaciens bearing pKn or pKB plasmid was infiltrated into 28-d-old N. benthamiana. The infiltrated leaves were collected at 7 dpi. D, Total RNA was extracted from infiltrated leaves and mRNA levels of NbVDACs were quantified by RT-qPCR. Data are mean ± standard de- viation (SD) from at least three independent experiments with three replicates each (N 5 3, n = 3) Asterisks indicate statistically significant differ- ences between the indicated groups by Student’s t test (**P 5 0.01, ***P 5 0.001).
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    Image Search Results


    Effect of glucose on the mRNA and protein expression of TvLEGU-2. ( A ) qPCR with specific primers for the tvlegu-2 and α-tubulin genes using 100 ng of cDNA from parasites grown in glucose restriction (GR) and high-glucose (HG) conditions. α-tubulin was used as a normalizing gene; ns, no significant differences. ( B ) Western blot assay of PREs from parasites grown under GR (<1 mM) and HG (50 mM). Coomassie Brilliant-Blue (CBB)-stained 10% SDS PAGE gel for PREs from parasites grown under GR and HG conditions (Lanes 2 and 3), respectively. For WB assays, duplicate gels were transferred onto NC membranes and incubated with different antibodies: Rα-TvLEGU-2pep (1:500 dilution) to detect the TvLEGU-2 protein, Rα-TvCP2r (1:6000 dilution) to detect a control protein overexpressed under GR conditions, Rα-TvTIM (1:1000 dilution) to detect an overexpressed TvTIM control protein under HG conditions, and a negative control with PI serum or no primary antibody (−). Arrowheads show the position of the native TvLEGU-2 (∼55, ∼49, ∼34, and ∼29 kDa) protein bands. ( C ) Silver-stained 2-DE protease-rich extracts from parasites grown in normal glucose conditions (25 mM) ( Ca ). WB of duplicate gels transferred onto NC membranes incubated with Rα-TvLEGU-1r (1:1000 dilution) antibody ( Cc ) to serve as a control for the specificity of Rα-TvLEGU-2pep antibody against other legumain proteins, Rα-TvLEGU-2pep (1:100 dilution) ( Cd ) to detect the TvLEGU-2 protein in PREs, or a negative control with PI serum or no primary antibody (−) ( Cb ). Arrowheads show the position of the native TvLEGU-2 (∼34 and ∼29 kDa) proteins. ( D ) Coomassie Brilliant Blue-stained, purified recombinant TvLEGU-1r protein (CBB; Lane 1). WB assays of TvLEGU-1r incubated with Rα-TvLEGU-1r (1:3000 dilution) (Lane 3), or Rα-TvLEGU-2pep (1:1000 dilution) (Lane 4) antibody or PI serum or only the secondary antibody as a negative control (−) (Lane 2). Arrowhead points to the recombinant protein band TvLEGU-1r (∼46 kDa). ( E ) Coomassie Brilliant Blue-stained, purified recombinant TvLEGU-2r protein (CBB; Lane 1). WB assays of TvLEGU-2r incubated with Rα-TvLEGU-2pep (1:1000 dilution) (Lane 4), or Rα-TvLEGU-1r (1:3000 dilution) (Lane 3) antibody, or PI serum or only the secondary antibody as a negative control (−) (Lane 2). Arrowhead points to the recombinant protein band TvLEGU-2r (∼85 kDa). kDa, molecular weight markers in kilodaltons (Bio-Rad).

    Journal: Pathogens

    Article Title: Trichomonas vaginalis Legumain-2, TvLEGU-2, Is an Immunogenic Cysteine Peptidase Expressed during Trichomonal Infection

    doi: 10.3390/pathogens13020119

    Figure Lengend Snippet: Effect of glucose on the mRNA and protein expression of TvLEGU-2. ( A ) qPCR with specific primers for the tvlegu-2 and α-tubulin genes using 100 ng of cDNA from parasites grown in glucose restriction (GR) and high-glucose (HG) conditions. α-tubulin was used as a normalizing gene; ns, no significant differences. ( B ) Western blot assay of PREs from parasites grown under GR (<1 mM) and HG (50 mM). Coomassie Brilliant-Blue (CBB)-stained 10% SDS PAGE gel for PREs from parasites grown under GR and HG conditions (Lanes 2 and 3), respectively. For WB assays, duplicate gels were transferred onto NC membranes and incubated with different antibodies: Rα-TvLEGU-2pep (1:500 dilution) to detect the TvLEGU-2 protein, Rα-TvCP2r (1:6000 dilution) to detect a control protein overexpressed under GR conditions, Rα-TvTIM (1:1000 dilution) to detect an overexpressed TvTIM control protein under HG conditions, and a negative control with PI serum or no primary antibody (−). Arrowheads show the position of the native TvLEGU-2 (∼55, ∼49, ∼34, and ∼29 kDa) protein bands. ( C ) Silver-stained 2-DE protease-rich extracts from parasites grown in normal glucose conditions (25 mM) ( Ca ). WB of duplicate gels transferred onto NC membranes incubated with Rα-TvLEGU-1r (1:1000 dilution) antibody ( Cc ) to serve as a control for the specificity of Rα-TvLEGU-2pep antibody against other legumain proteins, Rα-TvLEGU-2pep (1:100 dilution) ( Cd ) to detect the TvLEGU-2 protein in PREs, or a negative control with PI serum or no primary antibody (−) ( Cb ). Arrowheads show the position of the native TvLEGU-2 (∼34 and ∼29 kDa) proteins. ( D ) Coomassie Brilliant Blue-stained, purified recombinant TvLEGU-1r protein (CBB; Lane 1). WB assays of TvLEGU-1r incubated with Rα-TvLEGU-1r (1:3000 dilution) (Lane 3), or Rα-TvLEGU-2pep (1:1000 dilution) (Lane 4) antibody or PI serum or only the secondary antibody as a negative control (−) (Lane 2). Arrowhead points to the recombinant protein band TvLEGU-1r (∼46 kDa). ( E ) Coomassie Brilliant Blue-stained, purified recombinant TvLEGU-2r protein (CBB; Lane 1). WB assays of TvLEGU-2r incubated with Rα-TvLEGU-2pep (1:1000 dilution) (Lane 4), or Rα-TvLEGU-1r (1:3000 dilution) (Lane 3) antibody, or PI serum or only the secondary antibody as a negative control (−) (Lane 2). Arrowhead points to the recombinant protein band TvLEGU-2r (∼85 kDa). kDa, molecular weight markers in kilodaltons (Bio-Rad).

    Article Snippet: For 2-DE assays, PRE was obtained from parasites (6 × 10 7 ) lysed directly in 2-DE rehydration buffer (Bio-Rad, Hercules, CA, USA) in the absence of proteinase inhibitors.

    Techniques: Expressing, Western Blot, Staining, SDS Page, Incubation, Negative Control, Purification, Recombinant, Molecular Weight

    The 2-DE proteome images of control (A) and RC-treated (B) platelets. The differentially expressed protein spots were shown by the arrows.

    Journal: Pharmaceutical Biology

    Article Title: Differential proteomic analysis of platelets suggested target-related proteins in rabbit platelets treated with Rhizoma Corydalis

    doi: 10.1080/13880209.2016.1229340

    Figure Lengend Snippet: The 2-DE proteome images of control (A) and RC-treated (B) platelets. The differentially expressed protein spots were shown by the arrows.

    Article Snippet: Two-dimensional electrophoresis analysis was performed on a GE 2-DE system.

    Techniques:

    Figure 1 Identification of the BaMV-induced proteins in the S100 fraction. A, Genome of BaMV. B, Schematic representations of infectious con- structs which were BaMV-derived in this study. pKn, a binary vector which can express foreign genes driven by the upstream double 35S promoter of cauliflower mosaic virus. It also has a nopaline synthase (Nos) terminator. pKB, which has an infectious full-length BaMV construct in the pKn vector. pKB GFP, has a GFP ORF downstream of TGBp3, which was driven by the same promoter as CP. pKB GFP-2a-CP, GFP, and CP are linked with a 2a protein. C, 2-DE analysis of S100 fractions from vector- or BaMV-inoculated N. benthamiana. S100 fractions were extracted at 7 dpi. The proteins from S100 were separated by 2-DE analysis and the excised differentiated dots (indicated as numbers) were analyzed by LC–MS/MS. Agrobacterium tumefaciens bearing pKn or pKB plasmid was infiltrated into 28-d-old N. benthamiana. The infiltrated leaves were collected at 7 dpi. D, Total RNA was extracted from infiltrated leaves and mRNA levels of NbVDACs were quantified by RT-qPCR. Data are mean ± standard de- viation (SD) from at least three independent experiments with three replicates each (N 5 3, n = 3) Asterisks indicate statistically significant differ- ences between the indicated groups by Student’s t test (**P 5 0.01, ***P 5 0.001).

    Journal: Plant physiology

    Article Title: Voltage-dependent anion channel proteins associate with dynamic Bamboo mosaic virus-induced complexes.

    doi: 10.1093/plphys/kiab519

    Figure Lengend Snippet: Figure 1 Identification of the BaMV-induced proteins in the S100 fraction. A, Genome of BaMV. B, Schematic representations of infectious con- structs which were BaMV-derived in this study. pKn, a binary vector which can express foreign genes driven by the upstream double 35S promoter of cauliflower mosaic virus. It also has a nopaline synthase (Nos) terminator. pKB, which has an infectious full-length BaMV construct in the pKn vector. pKB GFP, has a GFP ORF downstream of TGBp3, which was driven by the same promoter as CP. pKB GFP-2a-CP, GFP, and CP are linked with a 2a protein. C, 2-DE analysis of S100 fractions from vector- or BaMV-inoculated N. benthamiana. S100 fractions were extracted at 7 dpi. The proteins from S100 were separated by 2-DE analysis and the excised differentiated dots (indicated as numbers) were analyzed by LC–MS/MS. Agrobacterium tumefaciens bearing pKn or pKB plasmid was infiltrated into 28-d-old N. benthamiana. The infiltrated leaves were collected at 7 dpi. D, Total RNA was extracted from infiltrated leaves and mRNA levels of NbVDACs were quantified by RT-qPCR. Data are mean ± standard de- viation (SD) from at least three independent experiments with three replicates each (N 5 3, n = 3) Asterisks indicate statistically significant differ- ences between the indicated groups by Student’s t test (**P 5 0.01, ***P 5 0.001).

    Article Snippet: The pellet was washed 3 times with methanol and resolved in 2-DE rehydration buffer (7 M urea, 2 M thiourea, 4% CHAPS, 1% IPG-buffer and 60 mM DTT) and separated by 13 cm Immobiline DryStrip pH 3–10 (GE healthcare, Chicago, IL, USA) with the conditions 500 V for 1 h, 1,000 V for 1 h, 2,000 V for 1 h, 8,000 V for 2.5 h with gradient and 8,000 V for 2 h. The strip was soaked in equilibration buffer I (50 mM Tris–HCl pH 8.8, 6 M urea, 30% glycerol, 2% sodium dodecyl sulfate (SDS) and 1% dithiothreitol) for 15 min and transferred to equilibration buffer II (50 mM Tris–HCl pH 8.8, 6M urea, 30% glycerol, 2% SDS, and 135 mM iodoacetamide) for the other 15 min. Next, the strips were placed onto 10–16% gradient SDS–polyacrylamide gels sealed by a 1% low-melting point agarose solution containing 1% agarose, 25 mM Tris base, 192 mM glycine, 0.1% SDS, and 0.002% (wt/vol) bromophenol blue.

    Techniques: Derivative Assay, Plasmid Preparation, Virus, Construct, Liquid Chromatography with Mass Spectroscopy, Quantitative RT-PCR