pkan aid 9myc (Addgene inc)
92
Structured Review
Addgene inc
pkan aid 9myc
Pkan Aid 9myc, supplied by Addgene inc, used in various techniques. Bioz Stars score: 92/100, based on 5 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pkan+aid+9myc/pKan-AID*-9myc+(Plasmid+%2399522)/pmc12006795-57-16-17
Average 92 stars, based on 5 article reviews
Pkan Aid 9myc, supplied by Addgene inc, used in various techniques. Bioz Stars score: 92/100, based on 5 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pkan+aid+9myc/pKan-AID*-9myc+(Plasmid+%2399522)/pmc12006795-57-16-17
Average 92 stars, based on 5 article reviews
pkan aid 9myc - by Bioz Stars,
2026-09
92/100 stars
Images
Related Articles
Sequencing:Article Title: Nutrient starvation-induced Hda1C rewiring: coordinated regulation of transcription and translation. Article Snippet: .. The TRP1 - p GAL1 cassette and AID sequence were amplified with pFA6a-TRP1-pGAL1-3HA (Addgene plasmid #41609) and Article Title: Nutrient starvation-induced Hda1C rewiring: coordinated regulation of transcription and translation Article Snippet: .. The TRP1 -p GAL1 cassette and AID sequence were amplified with pFA6a-TRP1-pGAL1-3HA (Addgene plasmid #41609) and Amplification:Article Title: Nutrient starvation-induced Hda1C rewiring: coordinated regulation of transcription and translation. Article Snippet: .. The TRP1 - p GAL1 cassette and AID sequence were amplified with pFA6a-TRP1-pGAL1-3HA (Addgene plasmid #41609) and Article Title: Nutrient starvation-induced Hda1C rewiring: coordinated regulation of transcription and translation Article Snippet: .. The TRP1 -p GAL1 cassette and AID sequence were amplified with pFA6a-TRP1-pGAL1-3HA (Addgene plasmid #41609) and Article Title: Bidirectional roles of the Ccr4-Not complex in regulating autophagy before and after nitrogen starvation. Article Snippet: Macroautophagy/autophagy is a highly conserved catabolic process by which cytoplasmic constituents are delivered to the vacuole/lysosome for degradation and recycling.. To maintain cellular homeostasis and prevent pathologies, the induction and amplitude of autophagy activity are finely controlled through regulation of ATG gene expression.. Here we report that the Ccr4-Not complex in Saccharomyces cerevisiae has bidirectional roles in regulating autophagy before and after nutrient deprivation. Plasmid Preparation:Article Title: Nutrient starvation-induced Hda1C rewiring: coordinated regulation of transcription and translation. Article Snippet: .. The TRP1 - p GAL1 cassette and AID sequence were amplified with pFA6a-TRP1-pGAL1-3HA (Addgene plasmid #41609) and Article Title: Nutrient starvation-induced Hda1C rewiring: coordinated regulation of transcription and translation Article Snippet: .. The TRP1 -p GAL1 cassette and AID sequence were amplified with pFA6a-TRP1-pGAL1-3HA (Addgene plasmid #41609) and Article Title: A compendium of chromatin contact maps reflecting regulation by chromatin remodelers in budding yeast Article Snippet: .. In SPT6-AID and CHD1ISW1-AID strain, AID tagging of endogenous genes were performed by polymerase chain reaction (PCR) products with Polymerase Chain Reaction:Article Title: A compendium of chromatin contact maps reflecting regulation by chromatin remodelers in budding yeast Article Snippet: .. In SPT6-AID and CHD1ISW1-AID strain, AID tagging of endogenous genes were performed by polymerase chain reaction (PCR) products with Homologous Recombination:Article Title: Bidirectional roles of the Ccr4-Not complex in regulating autophagy before and after nitrogen starvation. Article Snippet: Macroautophagy/autophagy is a highly conserved catabolic process by which cytoplasmic constituents are delivered to the vacuole/lysosome for degradation and recycling.. To maintain cellular homeostasis and prevent pathologies, the induction and amplitude of autophagy activity are finely controlled through regulation of ATG gene expression.. Here we report that the Ccr4-Not complex in Saccharomyces cerevisiae has bidirectional roles in regulating autophagy before and after nutrient deprivation. |
