Moderate hyperosmotic stress on Saccharomyces cerevisiae cells produces a temporary delay at the G1 stage of the cell cycle. This is accompanied by transitory downregulation of CLN1, CLN2 and CLB5 transcript levels, although not of CLN3, which codes for the most upstream activator of the G1/S transition. Osmotic shock to cells synchronized in early G1, when Cln3 is the only cyclin present, causes a delay in cell cycle resumption. This points to Cln3 as being a key cell cycle target for osmotic stress. We have observed that osmotic shock causes downregulation of the kinase activity of Cln3±Cdc28 complexes. This is concomitant with a temporary accumulation of Cln3 protein as a result of increased stability. The effects of the osmotic stress i...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
The cell wall is essential to preserve osmotic integrity of yeast cells. Some phenotypic traits of c...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
Exposure of S. cerevisiae cells to an increase in external osmolarity induces a temporary growth arr...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
The cell cycle is a sequence of biochemical events that are controlled by complex but robust molecul...
<div><p>The cell cycle is a sequence of biochemical events that are controlled by complex but robust...
Control of cell cycle by Stress Activated Protein Kinases (SAPKs) is an essential aspect for adaptat...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...
Adaptation to osmotic shock in Saccharomyces cerevisiae is brought about by the activation of two in...
Availability of nutrients is an important prerequisite for cellproliferation. The stress signals cau...
Signal transmission progresses via a series of transient protein-protein interactions and protein mo...
<div><p>Signal transmission progresses via a series of transient protein-protein interactions and pr...
Exposure of yeast to increases in extracellular osmolarity activates the stress-activated Hog1 MAP k...
THE ROLE OF HOG MAPK SIGNALING PATHWAY DURING OSMOTIC STRESS IN SACCHAROMYCES CEREVISIAE Budding yea...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
The cell wall is essential to preserve osmotic integrity of yeast cells. Some phenotypic traits of c...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
Exposure of S. cerevisiae cells to an increase in external osmolarity induces a temporary growth arr...
Control of cell cycle progression by stress-activated protein kinases (SAPKs) is essential for cell ...
The cell cycle is a sequence of biochemical events that are controlled by complex but robust molecul...
<div><p>The cell cycle is a sequence of biochemical events that are controlled by complex but robust...
Control of cell cycle by Stress Activated Protein Kinases (SAPKs) is an essential aspect for adaptat...
The HOG/p38 MAP kinase route is an important stress-activated signal transduction pathway that is we...
Adaptation to osmotic shock in Saccharomyces cerevisiae is brought about by the activation of two in...
Availability of nutrients is an important prerequisite for cellproliferation. The stress signals cau...
Signal transmission progresses via a series of transient protein-protein interactions and protein mo...
<div><p>Signal transmission progresses via a series of transient protein-protein interactions and pr...
Exposure of yeast to increases in extracellular osmolarity activates the stress-activated Hog1 MAP k...
THE ROLE OF HOG MAPK SIGNALING PATHWAY DURING OSMOTIC STRESS IN SACCHAROMYCES CEREVISIAE Budding yea...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
The cell wall is essential to preserve osmotic integrity of yeast cells. Some phenotypic traits of c...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...