Different mechanisms contribute to regulate cellular functions in order to cope with threats from physiological stress conditions. As a fundamental response to balance excess water loss and restore turgor, Saccharomyces cerevisiae subjected to increased osmolarity accelerate intracellular glycerol biosynthesis and accumulation as a compatible solute. This study assessed cellular response to sorbitol-induced osmolarity in aerobic glucose-limited chemostat culture at various levels of the glycerol flux. Cell number declined slightly without any substantial increase in dry weight and total protein contents following exposure to 1M sorbitol that lasted for 90 min. On the other hand, total glycerol levels increased over time in different yeast c...
AbstractThe transcriptional responses of the osmotically induced genes ALD2, CTT1, ENA1, GPD1, HSP12...
The accumulation of glycerol is essential for yeast viability upon hyperosmotic stress. Here we show...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...
Different mechanisms contribute to regulate cellular functions in order to cope with threats from ph...
Intracellular accumulation of glycerol is essential for yeast cells to survive hyperosmotic stress. ...
Intracellular accumulation of glycerol is essential for yeast cells to survive hyperosmotic stress. ...
Adaptation to altered osmotic conditions is a fundamental property of living cells and has been stud...
The ability to adapt to changing and potentially harmful conditions in the surrounding environment i...
AbstractProduction of glycerol and a key enzyme in glycerol production, glycerol 3-phosphate dehydro...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
During fermentation cells are subjected to various kinds of stress. One of the stresses concerned is...
We provide an integrated dynamic view on a eukaryotic osmolyte system, linking signaling with regula...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
Yeast cells adapt to hyperosmotic shock by accumulating glycerol and altering expression of hundreds...
Yeast cells adapt to hyperosmotic shock by accumulating glycerol and altering expression of hundreds...
AbstractThe transcriptional responses of the osmotically induced genes ALD2, CTT1, ENA1, GPD1, HSP12...
The accumulation of glycerol is essential for yeast viability upon hyperosmotic stress. Here we show...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...
Different mechanisms contribute to regulate cellular functions in order to cope with threats from ph...
Intracellular accumulation of glycerol is essential for yeast cells to survive hyperosmotic stress. ...
Intracellular accumulation of glycerol is essential for yeast cells to survive hyperosmotic stress. ...
Adaptation to altered osmotic conditions is a fundamental property of living cells and has been stud...
The ability to adapt to changing and potentially harmful conditions in the surrounding environment i...
AbstractProduction of glycerol and a key enzyme in glycerol production, glycerol 3-phosphate dehydro...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
During fermentation cells are subjected to various kinds of stress. One of the stresses concerned is...
We provide an integrated dynamic view on a eukaryotic osmolyte system, linking signaling with regula...
Adaptation to changes in osmolarity is fundamental for the survival of living cells, and has implica...
Yeast cells adapt to hyperosmotic shock by accumulating glycerol and altering expression of hundreds...
Yeast cells adapt to hyperosmotic shock by accumulating glycerol and altering expression of hundreds...
AbstractThe transcriptional responses of the osmotically induced genes ALD2, CTT1, ENA1, GPD1, HSP12...
The accumulation of glycerol is essential for yeast viability upon hyperosmotic stress. Here we show...
Osmoregulation encompasses active homeostatic processes that ensure proper cell volume, shape and tu...