gel red dye Search Results


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Chem Impex International carboxyphenol ba
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Chem Impex International core solution
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GenStar Biosolutions 0.5% tbe agarose gel starstain red nucleic acid dye
Biochemical and functional characterizations of AcrIIA17 and AcrIIA18. (A, B) In vitro <t>DNA</t> <t>cleavage</t> assay of Cas9 in the presence of AcrIIA17 ( A ) or AcrIIA18 ( B ). The assay was performed with different orders of addition as described in the schematic (lower inset). The pre-incubated components are shown in parentheses. These gels are representative of three replicate experiments. (C, D) A <t>TBE-urea</t> denaturing gel showing AcrIIA17- ( C ) or AcrIIA18-mediated ( D ) cleavage of sgRNA. The assay was performed with different orders of addition. dCas9: dead mutant Cas9. These gels are representative of three replicate experiments. (E, F) The gel electrophoresis mobility shift assay (EMSA) on sgRNA in the presence of AcrIIA17 ( E ) or AcrIIA18 ( F ). The assay was performed with different orders of addition. These gels are representative of three replicate experiments.
0.5% Tbe Agarose Gel Starstain Red Nucleic Acid Dye, supplied by GenStar Biosolutions, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Phenix Research Products gel red nucleic acid dye
Biochemical and functional characterizations of AcrIIA17 and AcrIIA18. (A, B) In vitro <t>DNA</t> <t>cleavage</t> assay of Cas9 in the presence of AcrIIA17 ( A ) or AcrIIA18 ( B ). The assay was performed with different orders of addition as described in the schematic (lower inset). The pre-incubated components are shown in parentheses. These gels are representative of three replicate experiments. (C, D) A <t>TBE-urea</t> denaturing gel showing AcrIIA17- ( C ) or AcrIIA18-mediated ( D ) cleavage of sgRNA. The assay was performed with different orders of addition. dCas9: dead mutant Cas9. These gels are representative of three replicate experiments. (E, F) The gel electrophoresis mobility shift assay (EMSA) on sgRNA in the presence of AcrIIA17 ( E ) or AcrIIA18 ( F ). The assay was performed with different orders of addition. These gels are representative of three replicate experiments.
Gel Red Nucleic Acid Dye, supplied by Phenix Research Products, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Beijing Solarbio Science gelred (solargelred nucleic acid gel stain
Biochemical and functional characterizations of AcrIIA17 and AcrIIA18. (A, B) In vitro <t>DNA</t> <t>cleavage</t> assay of Cas9 in the presence of AcrIIA17 ( A ) or AcrIIA18 ( B ). The assay was performed with different orders of addition as described in the schematic (lower inset). The pre-incubated components are shown in parentheses. These gels are representative of three replicate experiments. (C, D) A <t>TBE-urea</t> denaturing gel showing AcrIIA17- ( C ) or AcrIIA18-mediated ( D ) cleavage of sgRNA. The assay was performed with different orders of addition. dCas9: dead mutant Cas9. These gels are representative of three replicate experiments. (E, F) The gel electrophoresis mobility shift assay (EMSA) on sgRNA in the presence of AcrIIA17 ( E ) or AcrIIA18 ( F ). The assay was performed with different orders of addition. These gels are representative of three replicate experiments.
Gelred (Solargelred Nucleic Acid Gel Stain, supplied by Beijing Solarbio Science, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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FUJIFILM gel red dye
Biochemical and functional characterizations of AcrIIA17 and AcrIIA18. (A, B) In vitro <t>DNA</t> <t>cleavage</t> assay of Cas9 in the presence of AcrIIA17 ( A ) or AcrIIA18 ( B ). The assay was performed with different orders of addition as described in the schematic (lower inset). The pre-incubated components are shown in parentheses. These gels are representative of three replicate experiments. (C, D) A <t>TBE-urea</t> denaturing gel showing AcrIIA17- ( C ) or AcrIIA18-mediated ( D ) cleavage of sgRNA. The assay was performed with different orders of addition. dCas9: dead mutant Cas9. These gels are representative of three replicate experiments. (E, F) The gel electrophoresis mobility shift assay (EMSA) on sgRNA in the presence of AcrIIA17 ( E ) or AcrIIA18 ( F ). The assay was performed with different orders of addition. These gels are representative of three replicate experiments.
Gel Red Dye, supplied by FUJIFILM, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Biochemical and functional characterizations of AcrIIA17 and AcrIIA18. (A, B) In vitro DNA cleavage assay of Cas9 in the presence of AcrIIA17 ( A ) or AcrIIA18 ( B ). The assay was performed with different orders of addition as described in the schematic (lower inset). The pre-incubated components are shown in parentheses. These gels are representative of three replicate experiments. (C, D) A TBE-urea denaturing gel showing AcrIIA17- ( C ) or AcrIIA18-mediated ( D ) cleavage of sgRNA. The assay was performed with different orders of addition. dCas9: dead mutant Cas9. These gels are representative of three replicate experiments. (E, F) The gel electrophoresis mobility shift assay (EMSA) on sgRNA in the presence of AcrIIA17 ( E ) or AcrIIA18 ( F ). The assay was performed with different orders of addition. These gels are representative of three replicate experiments.

Journal: Nucleic Acids Research

Article Title: Inhibition mechanisms of CRISPR-Cas9 by AcrIIA17 and AcrIIA18

doi: 10.1093/nar/gkab1197

Figure Lengend Snippet: Biochemical and functional characterizations of AcrIIA17 and AcrIIA18. (A, B) In vitro DNA cleavage assay of Cas9 in the presence of AcrIIA17 ( A ) or AcrIIA18 ( B ). The assay was performed with different orders of addition as described in the schematic (lower inset). The pre-incubated components are shown in parentheses. These gels are representative of three replicate experiments. (C, D) A TBE-urea denaturing gel showing AcrIIA17- ( C ) or AcrIIA18-mediated ( D ) cleavage of sgRNA. The assay was performed with different orders of addition. dCas9: dead mutant Cas9. These gels are representative of three replicate experiments. (E, F) The gel electrophoresis mobility shift assay (EMSA) on sgRNA in the presence of AcrIIA17 ( E ) or AcrIIA18 ( F ). The assay was performed with different orders of addition. These gels are representative of three replicate experiments.

Article Snippet: The cleavage products were separated and visualized by 0.5% TBE agarose gel pertained with StarStain Red Nucleic Acid Dye (GenStar).

Techniques: Functional Assay, In Vitro, DNA Cleavage Assay, Incubation, Mutagenesis, Nucleic Acid Electrophoresis, Mobility Shift

The N-terminal β-hairpin in NTD is critical for AcrIIA18 function. ( A ) The charged residues of AcrIIA18 selected for mutagenesis are shown in pink sphere representations ( B ) In vitro DNA cleavage assay in the presence of the wild-type or mutated AcrIIA18. This gel is representative of three replicate experiments. ( C ) Representative TBE-urea denaturing gels showing the sgRNA cleavage by wild-type and mutated AcrIIA18 in the presence of Cas9. This gel is representative of three replicate experiments. ( D ) The V-shaped groove of AcrIIA18. Charged residues Lys15, Arg19 and Arg52 are located in the V-shaped groove. Tyr17 stacks with Lys15 and Arg19. ( E ) Y17A mutant almost failed to inhibit Cas9-mediated DNA cleavage. This gel is representative of three replicate experiments. ( F ) Y17A mutant significantly impaired the AcrIIA18-induced sgRNA cleavage. This gel is representative of three replicate experiments.

Journal: Nucleic Acids Research

Article Title: Inhibition mechanisms of CRISPR-Cas9 by AcrIIA17 and AcrIIA18

doi: 10.1093/nar/gkab1197

Figure Lengend Snippet: The N-terminal β-hairpin in NTD is critical for AcrIIA18 function. ( A ) The charged residues of AcrIIA18 selected for mutagenesis are shown in pink sphere representations ( B ) In vitro DNA cleavage assay in the presence of the wild-type or mutated AcrIIA18. This gel is representative of three replicate experiments. ( C ) Representative TBE-urea denaturing gels showing the sgRNA cleavage by wild-type and mutated AcrIIA18 in the presence of Cas9. This gel is representative of three replicate experiments. ( D ) The V-shaped groove of AcrIIA18. Charged residues Lys15, Arg19 and Arg52 are located in the V-shaped groove. Tyr17 stacks with Lys15 and Arg19. ( E ) Y17A mutant almost failed to inhibit Cas9-mediated DNA cleavage. This gel is representative of three replicate experiments. ( F ) Y17A mutant significantly impaired the AcrIIA18-induced sgRNA cleavage. This gel is representative of three replicate experiments.

Article Snippet: The cleavage products were separated and visualized by 0.5% TBE agarose gel pertained with StarStain Red Nucleic Acid Dye (GenStar).

Techniques: Mutagenesis, In Vitro, DNA Cleavage Assay

AcrIIA18 triggers sgRNA truncation, and the product is incapable of inducing Cas9-mediated DNA cleavage. ( A ) EMSA was performed using the carboxyfluorescein (FAM)-labeled target DNA as a probe. EMSA showing Cas9 binding to DNA in the presence of either AcrIIA18 or 15 nt sgRNA. 15 nt sgRNA: sgRNA with 15 nt spacer. This gel is representative of three replicate experiments. ( B ) Schematic diagrams of sgRNA. The proposed cleavage site of spacer is indicated by a scissors. ( C ) AcrIIA18 induces the truncation of sgRNA to 15 nt spacer. 15 nt sgRNA and 14 nt sgRNA were used as marker. This gel is representative of three replicate experiments. ( D ) Representative TBE–urea denaturing gels showing sgRNAs of 30, 20 and 15-nt, respectively, cleavage by AcrIIA18. This gel is representative of three replicate experiments. ( E ) In vitro DNA cleavage assay for Cas9 complexed with full-length (20 nt) or 15 nt sgRNA. This gel is representative of three replicate experiments.

Journal: Nucleic Acids Research

Article Title: Inhibition mechanisms of CRISPR-Cas9 by AcrIIA17 and AcrIIA18

doi: 10.1093/nar/gkab1197

Figure Lengend Snippet: AcrIIA18 triggers sgRNA truncation, and the product is incapable of inducing Cas9-mediated DNA cleavage. ( A ) EMSA was performed using the carboxyfluorescein (FAM)-labeled target DNA as a probe. EMSA showing Cas9 binding to DNA in the presence of either AcrIIA18 or 15 nt sgRNA. 15 nt sgRNA: sgRNA with 15 nt spacer. This gel is representative of three replicate experiments. ( B ) Schematic diagrams of sgRNA. The proposed cleavage site of spacer is indicated by a scissors. ( C ) AcrIIA18 induces the truncation of sgRNA to 15 nt spacer. 15 nt sgRNA and 14 nt sgRNA were used as marker. This gel is representative of three replicate experiments. ( D ) Representative TBE–urea denaturing gels showing sgRNAs of 30, 20 and 15-nt, respectively, cleavage by AcrIIA18. This gel is representative of three replicate experiments. ( E ) In vitro DNA cleavage assay for Cas9 complexed with full-length (20 nt) or 15 nt sgRNA. This gel is representative of three replicate experiments.

Article Snippet: The cleavage products were separated and visualized by 0.5% TBE agarose gel pertained with StarStain Red Nucleic Acid Dye (GenStar).

Techniques: Labeling, Binding Assay, Marker, In Vitro, DNA Cleavage Assay