A yeast Saccharomyces cerevisiae Snf1 kinase, an analog of mammalian AMPK, regulates glucose derepression of genes required for utilization of alternative carbon sources through the transcriptional repressor Mig1. It has been suggested that the Glc7-Reg1 phosphatase dephosphorylates Mig1. Here we report that Mig1 is dephosphorylated by Glc7-Reg1 in an apparently glucose-dependent mechanism but also by a mechanism independent of glucose and Glc7-Reg1. In addition to serine/threonine phosphatases another process including tyrosine phosphorylation seems crucial for Mig1 regulation. Taken together, Mig1 dephosphorylation appears to be controlled in a complex manner, in line with the importance for rapid and sensitive regulation upon altered glu...
Background: The yeast AMPK/SNF1 pathway is best known for its role in glucose de/repression. When gl...
Glucose, fructose and mannose are the preferred carbon/energy sources for the yeastSaccharomyces cer...
AbstractThe AMP-activated protein kinase (AMPK) controls energy homeostasis in eukaryotic cells. Her...
A yeast Saccharomyces cerevisiae Snf1 kinase, an analog of mammalian AMPK, regulates glucose derepre...
The AMP-activated protein kinase, AMPK, controls energy homeostasis in eukaryotic cells but little i...
10.1111/febs.12753The AMP-activated protein kinase, AMPK, controls energy homeostasis in eukaryotic ...
Glucose, fructose and mannose are the preferred carbon/energy sources for the yeastSaccharomyces cer...
Glucose repression is a global transcriptional regulatory mechanism commonly observed in micro-organ...
Glucose repression is a global transcriptional regulatory mechanism commonly observed in micro-organ...
Mig1p is a zinc finger protein required for repression of glucose-regulated genes in budding yeast. ...
The addition of glucose to Saccharomyces cerevisiae cells causes reprogramming of gene expression. G...
Mig1p is a zinc finger protein required for repression of glucose-regulated genes in budding yeast. ...
AbstractMig1p is a zinc finger protein required for repression of glucose-regulated genes in budding...
Protein phosphatase 1, comprising the regulatory subunit Reg1 and the catalytic subunit Glc7, has a ...
Background: The yeast AMPK/SNF1 pathway is best known for its role in glucose de/repression. When gl...
Background: The yeast AMPK/SNF1 pathway is best known for its role in glucose de/repression. When gl...
Glucose, fructose and mannose are the preferred carbon/energy sources for the yeastSaccharomyces cer...
AbstractThe AMP-activated protein kinase (AMPK) controls energy homeostasis in eukaryotic cells. Her...
A yeast Saccharomyces cerevisiae Snf1 kinase, an analog of mammalian AMPK, regulates glucose derepre...
The AMP-activated protein kinase, AMPK, controls energy homeostasis in eukaryotic cells but little i...
10.1111/febs.12753The AMP-activated protein kinase, AMPK, controls energy homeostasis in eukaryotic ...
Glucose, fructose and mannose are the preferred carbon/energy sources for the yeastSaccharomyces cer...
Glucose repression is a global transcriptional regulatory mechanism commonly observed in micro-organ...
Glucose repression is a global transcriptional regulatory mechanism commonly observed in micro-organ...
Mig1p is a zinc finger protein required for repression of glucose-regulated genes in budding yeast. ...
The addition of glucose to Saccharomyces cerevisiae cells causes reprogramming of gene expression. G...
Mig1p is a zinc finger protein required for repression of glucose-regulated genes in budding yeast. ...
AbstractMig1p is a zinc finger protein required for repression of glucose-regulated genes in budding...
Protein phosphatase 1, comprising the regulatory subunit Reg1 and the catalytic subunit Glc7, has a ...
Background: The yeast AMPK/SNF1 pathway is best known for its role in glucose de/repression. When gl...
Background: The yeast AMPK/SNF1 pathway is best known for its role in glucose de/repression. When gl...
Glucose, fructose and mannose are the preferred carbon/energy sources for the yeastSaccharomyces cer...
AbstractThe AMP-activated protein kinase (AMPK) controls energy homeostasis in eukaryotic cells. Her...