0000000000521081

AUTHOR

Magdalena Topolska

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Phosphoproteomic analysis accross the yeast life cycle reveals homeostatic regulation of fatty acyl chain-length by phosphorylation of the fatty acid…

2020

The ability to remodel lipid metabolism under changing conditions is pivotal for cellular functionality and homeostasis. Here, we characterize the regulatory landscape of phosphorylation-based signaling events across the life cycle of Saccharomyces cerevisiae and determine its impact on the regulation of lipid metabolism. Our data show that 50 lipid metabolic proteins are differentially phosphorylated as cells transit between different physiological states. To identify functional phosphosites, we devised a strategy where multiple phosphosites are simultaneously mutated into phosphomimetic or phosphodeficient alleles and mutants are phenotyped by in-depth lipidomics flux analysis. This uncov…

BioquímicaBiologia
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