[PDF][PDF] Gene Regulation in Saccharomyces cerevisiae: the role of NAD+ metabolism and non-coding RNAs in protein-coding genes

2020 - pure.manchester.ac.uk
Chromatin plays critical roles in regulating transcription. It needs to be accessible to allow
the binding of specific regulators such as transcription factors and other gene regulatory …

Gene Regulation in Saccharomyces cerevisiae: the role of NAD+ metabolism and non-coding RNAs in protein-coding genes

L Balarezo Cisneros - 2020 - escholar.manchester.ac.uk
Recent technological advancements have paved the way for high throughput genome-scale
experiments to infer individual gene functions, gene and protein interactions, and network …

[PDF][PDF] Gene Regulation in Saccharomyces cerevisiae: the role of NAD+ metabolism and non-coding RNAs in protein-coding genes

LN Balarezo-Cisneros - 2020 - research.manchester.ac.uk
Chromatin plays critical roles in regulating transcription. It needs to be accessible to allow
the binding of specific regulators such as transcription factors and other gene regulatory …

Gene Regulation in Saccharomyces Cerevisiae: the Role of Nad+ Metabolism and Non-Coding Rnas in Protein-Coding Genes

L Balarezo Cisneros - 2020 - dl.acm.org
Recent technological advancements have paved the way for high throughput genome-scale
experiments to infer individual gene functions, gene and protein interactions, and network …

Gene Regulation in Saccharomyces cerevisiae: the role of NAD+ metabolism and non-coding RNAs in protein-coding genes

L Balarezo Cisneros - 2020 - escholar.manchester.ac.uk
Recent technological advancements have paved the way for high throughput genome-scale
experiments to infer individual gene functions, gene and protein interactions, and network …