AI Article Synopsis

  • Understanding cell responses to stress is essential for grasping how they function, especially in yeast, where data on transcriptional responses is abundant but protein dynamics are less studied.
  • This research tracked 5,330 proteins in yeast under different stressors, revealing their localization and abundance at a single-cell level.
  • Unique patterns of protein changes were identified for each stress, highlighting strategies like bet-hedging, organelle rearrangement, and protein redistribution, with all data accessible via the online database LOQATE.

Article Abstract

Uncovering the mechanisms underlying robust responses of cells to stress is crucial for our understanding of cellular physiology. Indeed, vast amounts of data have been collected on transcriptional responses in Saccharomyces cerevisiae. However, only a handful of pioneering studies describe the dynamics of proteins in response to external stimuli, despite the fact that regulation of protein levels and localization is an essential part of such responses. Here we characterized unprecedented proteome plasticity by systematically tracking the localization and abundance of 5,330 yeast proteins at single-cell resolution under three different stress conditions (DTT, H2O2, and nitrogen starvation) using the GFP-tagged yeast library. We uncovered a unique "fingerprint" of changes for each stress and elucidated a new response arsenal for adapting to radical environments. These include bet-hedging strategies, organelle rearrangement, and redistribution of protein localizations. All data are available for download through our online database, LOQATE (localization and quantitation atlas of yeast proteome).

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3601363PMC
http://dx.doi.org/10.1083/jcb.201301120DOI Listing

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