Curated by Dewpoint Therapeutics
Contribute Contact
search icon
Condensates Logo
  • Condensates 101
    • Introduction to Condensates
    • Key Publications
    • Condensates Glossary
  • Publications & Events
    • Publications
    • Kitchen Table Talks
    • Community Events
  • Resources
    • CD-CODE
    • C-mods
    • Condensatopathies
  • Expert Voice
  • Subscribe for Free
  • Log In
  • My Account
  • Subscribe for Free
  • Log in

Publications

    View Your Favorites

    Access your saved content with one easy click.

    My Favorites

    Save Your Favorites

    Subscribe for free to save your favorites and view a personalized view of content.

    Subscribe for Free

    Be a Contributor

    Submit new content suggestions for Condensates.com.

    Contribute

Home > Publications

Stress granules are formed in renal proximal tubular cells during metabolic stress and ischemic injury for cell survival

Authors Wang S, Kwon SH, Su Y, Dong Z
Details Am J Physiol Renal Physiol. 2019 Jul 1;317(1):F116-F123. doi: 10.1152/ajprenal.00139.2019. Epub 2019 May 15
DOI 10.1152/ajprenal.00139.2019
Topics
  • Metabolism
  • Nephrology
Tags
  • Stress granules
Source View on PubMed
Share

Suggested Publications

Biomolecular condensates | P bodies

Oncogenic KRAS Rewires mRNA Stability and Translation through AGO2-Mediated Disruption of the miRNA pathway

Biology and Physics of Condensates | Cancer | Metabolism
Learn More
Biomolecular condensates | Stress granules

PKA-dependent phosphorylation drives stress granule maturation and controls recovery from prolonged starvation

Biology and Physics of Condensates | Metabolism | Neurology
Learn More
Biomolecular condensates | Membraneless organelles | Phase separation | Reviews

Biomolecular condensates as dynamic regulators of musculoskeletal homeostasis, disease, and therapeutic challenges

Biology and Physics of Condensates | Metabolism | Technology
Learn More
Biomolecular condensates | Phase separation

ER-liquid condensate contacts sequester FAM134B/C and RhoA to govern cell morphology

Biology and Physics of Condensates | Metabolism
Learn More

Trans-interface coupling in the tetrameric enzyme underlies allosteric control in Escherichia coli biosynthetic threonine deaminase

Biology and Physics of Condensates | Metabolism
Learn More
  • Introduction to Condensates
  • Publications & Events
  • Resources
  • Expert Voice
  • Subscribe
  • Log In
  • My Account
  • Sign Out
  • About Condensates.com
  • About Dewpoint

Contribute

News, events, resources, and insights by and for the condensate community.

Contribute

© 2026 Dewpoint Therapeutics

  • Privacy
  • Terms
wpDiscuz