Widespread reorganization of metabolic enzymes into reversible assemblies upon nutrient starvation
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Open Access
- 23 June 2009
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 106 (25) , 10147-10152
- https://doi.org/10.1073/pnas.0812771106
Abstract
Proteins are likely to organize into complexes that assemble and disassemble depending on cellular needs. When ≈800 yeast strains expressing GFP-tagged proteins were grown to stationary phase, a surprising number of proteins involved in intermediary metabolism and stress response were observed to form punctate cytoplasmic foci. The formation of these discrete physical structures was confirmed by immunofluorescence and mass spectrometry of untagged proteins. The purine biosynthetic enzyme Ade4-GFP formed foci in the absence of adenine, and cycling between punctate and diffuse phenotypes could be controlled by adenine subtraction and addition. Similarly, glutamine synthetase (Gln1-GFP) foci cycled reversibly in the absence and presence of glucose. The structures were neither targeted for vacuolar or autophagosome degradation nor colocalized with P bodies or major organelles. Thus, upon nutrient depletion we observe widespread protein assemblies displaying nutrient-specific formation and dissolution.Keywords
This publication has 29 references indexed in Scilit:
- Global metabolic changes following loss of a feedback loop reveal dynamic steady states of the yeast metabolomeMetabolic Engineering, 2007
- Actin Bodies in Yeast Quiescent Cells: An Immediately Available Actin Reserve?Molecular Biology of the Cell, 2006
- Genome-Wide Analyses Reveal RNA Polymerase II Located Upstream of Genes Poised for Rapid Response upon S. cerevisiae Stationary Phase ExitMolecular Cell, 2005
- Processing bodies require RNA for assembly and contain nontranslating mRNAsRNA, 2005
- Prediction of sequence-dependent and mutational effects on the aggregation of peptides and proteinsNature Biotechnology, 2004
- Global analysis of protein localization in budding yeastNature, 2003
- Empirical Statistical Model To Estimate the Accuracy of Peptide Identifications Made by MS/MS and Database SearchAnalytical Chemistry, 2002
- The genomics of yeast responses to environmental stress and starvationFunctional & Integrative Genomics, 2002
- Apg2 Is a Novel Protein Required for the Cytoplasm to Vacuole Targeting, Autophagy, and Pexophagy PathwaysJournal of Biological Chemistry, 2001
- Isolation of Subcellular Fractions from the YeastSaccharomyces cerevisiaeCurrent Protocols in Cell Biology, 2000