Stress biology: Complexity and multifariousness in health and disease Review


Authors: Mayer, M. P.; Blair, L.; Blatch, G. L.; Borges, T. J.; Chadli, A.; Chiosis, G.; de Thonel, A.; Dinkova-Kostova, A.; Ecroyd, H.; Edkins, A. L.; Eguchi, T.; Fleshner, M.; Foley, K. P.; Fragkostefanakis, S.; Gestwicki, J.; Goloubinoff, P.; Heritz, J. A.; Heske, C. M.; Hibshman, J. D.; Joutsen, J.; Li, W.; Lynes, M.; Mendillo, M. L.; Mivechi, N.; Mokoena, F.; Okusha, Y.; Prahlad, V.; Repasky, E.; Sannino, S.; Scalia, F.; Shalgi, R.; Sistonen, L.; Sontag, E.; van Oosten-Hawle, P.; Vihervaara, A.; Wickramaratne, A.; Wang, S. X. Y.; Zininga, T.
Review Title: Stress biology: Complexity and multifariousness in health and disease
Abstract: Preserving and regulating cellular homeostasis in the light of changing environmental conditions or developmental processes is of pivotal importance for single cellular and multicellular organisms alike. To counteract an imbalance in cellular homeostasis transcriptional programs evolved, called the heat shock response, unfolded protein response, and integrated stress response, that act cell-autonomously in most cells but in multicellular organisms are subjected to cell-nonautonomous regulation. These transcriptional programs downregulate the expression of most genes but increase the expression of heat shock genes, including genes encoding molecular chaperones and proteases, proteins involved in the repair of stress-induced damage to macromolecules and cellular structures. Sixty-one years after the discovery of the heat shock response by Ferruccio Ritossa, many aspects of stress biology are still enigmatic. Recent progress in the understanding of stress responses and molecular chaperones was reported at the 12th International Symposium on Heat Shock Proteins in Biology, Medicine and the Environment in the Old Town Alexandria, VA, USA from 28th to 31st of October 2023. © 2024 The Authors
Keywords: heat shock response; heat shock proteins; molecular chaperones; stress response; heat shock transcription factors; protein folding diseases
Journal Title: Cell Stress & Chaperones
Volume: 29
Issue: 1
ISSN: 1355-8145
Publisher: Springer  
Date Published: 2024-02-01
Start Page: 143
End Page: 157
Language: English
DOI: 10.1016/j.cstres.2024.01.006
PROVIDER: scopus
PUBMED: 38311120
DOI/URL:
Notes: Source: Scopus
Altmetric
Citation Impact
BMJ Impact Analytics
MSK Authors
  1. Gabriela Chiosis
    279 Chiosis