Roles of the heat shock transcription factors in regulation of the heat shock response and beyond
Top Cited Papers
- 20 March 2001
- journal article
- review article
- Published by Wiley in The FASEB Journal
- Vol. 15 (7) , 1118-1131
- https://doi.org/10.1096/fj00-0294rev
Abstract
The heat shock response, characterized by increased expression of heat shock proteins (Hsps) is induced by exposure of cells and tissues to extreme conditions that cause acute or chronic stress. Hsps function as molecular chaperones in regulating cellular homeostasis and promoting survival. If the stress is too severe, a signal that leads to programmed cell death, apoptosis, is activated, thereby providing a finely tuned balance between survival and death. In addition to extracellular stimuli, several nonstressful conditions induce Hsps during normal cellular growth and development. The enhanced heat shock gene expression in response to various stimuli is regulated by heat shock transcription factors (HSFs). After the discovery of the family of HSFs (i.e., murine and human HSF1, 2, and 4 and a unique avian HSF3), the functional relevance of distinct HSFs is now emerging. HSF1, an HSF prototype, and HSF3 are responsible for heat-induced Hsp expression, whereas HSF2 is refractory to classical stressors. HSF4 is expressed in a tissue-specific manner; similar to HSF1 and HSF2, alternatively spliced isoforms add further complexity to its regulation. Recently developed powerful genetic models have provided evidence for both cooperative and specific functions of HSFs that expand beyond the heat shock response. Certain specialized functions of HSFs may even include regulation of novel target genes in response to distinct stimuli.—Pirkkala, L., Nykänen, P, Sistonen, L. Roles of the heat shock transcription factors in regulation of the heat shock response and beyond.Keywords
This publication has 124 references indexed in Scilit:
- Molecular Basis of Competition between HSF2 and Catalytic Subunit for Binding to the PR65/A Subunit of PP2ABiochemical and Biophysical Research Communications, 2000
- HSF1 is required for extra-embryonic development, postnatal growth and protection during inflammatory responses in miceThe EMBO Journal, 1999
- Proteasome Inhibitors MG132 and Lactacystin Hyperphosphorylate HSF1 and Induce hsp70 and hsp27 ExpressionBiochemical and Biophysical Research Communications, 1999
- The Trimerization Domain of Human Heat Shock Factor 2 Is Able to Interact with Nucleoporin p62Biochemical and Biophysical Research Communications, 1997
- Multiple functions ofDrosophilaheat shock transcription factorin vivoThe EMBO Journal, 1997
- Repression of human heat shock factor 1 activity at control temperature by phosphorylation.Genes & Development, 1996
- The cDNA encoding Xenopus laevis heat-shock factor 1 (XHSF1): nucleotide and deduced amino-acid sequences, and properties of the encoded proteinGene, 1995
- Expression of Heat Shock Factor 2 in Mouse Testis: Potential Role as a Regulator of Heat-Shock Protein Gene Expression during Spermatogenesis1Biology of Reproduction, 1994
- A Structural Basis for Sequence ComparisonsJournal of Molecular Biology, 1993
- Heat shock factor is regulated differently in yeast and HeLa cellsNature, 1987