Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic engineering approach to manipulate the stoichiometry of fatty acid unsaturation, a regulator of cell membrane fluidity, in Saccharomyces cerevisiae. Unexpectedly, reduced lipid unsaturation triggered cell-cell adhesion (flocculation), a phenomenon characteristic of industrial yeast but uncommon in laboratory strains. We find that ER lipid saturation sensors induce expression of FLO1 - encoding a cell wall polysaccharide binding protein - independently of its canonical regulator. In wild-type cells, Flo1p-dependent flocculation occurs under oxygen-limited growth, which reduces unsaturated lipid synthesis and thus serves as the environmental tri...
Abstract Background Yeast has been the focus of development of cell biofactories for the production ...
Preservation of both the integrity and fluidity of biological membranes is a critical cellular homeo...
Preservation of both the integrity and fluidity of biological membranes is a critical cellular homeo...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Abstract Background Yeast has been the focus of development of cell biofactories for the production ...
Preservation of both the integrity and fluidity of biological membranes is a critical cellular homeo...
Preservation of both the integrity and fluidity of biological membranes is a critical cellular homeo...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
Cells modulate lipid metabolism in order to maintain membrane homeostasis. Here we use a metabolic e...
The lipid composition of biological membranes can differ significantly between organisms and even be...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Background: Yeast has been the focus of development of cell biofactories for the production of lipid...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Cells maintain physicochemical characteristics of membranes in order to allow for proper function of...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Cells maintain membrane fluidity by regulating lipid saturation, but the molecular mechanisms of thi...
Abstract Background Yeast has been the focus of development of cell biofactories for the production ...
Preservation of both the integrity and fluidity of biological membranes is a critical cellular homeo...
Preservation of both the integrity and fluidity of biological membranes is a critical cellular homeo...