Regulation of the heat shock transcriptional response: cross talk between a family of heat shock factors, molecular chaperones, and negative regulators.
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Summary
The protective role of HSPs is a measure of their capacity to assist in the repair of protein damage, through their chaperoning effects on proteins, protect cells from many forms of stress-induced cell damage and could influence the course of disease.
- Type
- review
- Published
- 1998-12-15
- Cited by
- 1,947
- References
- 102
- Access
- Open access
- OpenAlex
- https://openalex.org/W1967138582
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1678147
Keywords
Biology, Heat shock protein, Heat shock, Shock (circulatory), Heat shock factor
References
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- Identification of the C‐terminal activator domain in yeast heat shock factor: independent control of transient and sustained transcriptional activity.
- Sensing stress and responding to stress.
- Major heat shock protein hsp70 protects tumor cells from tumor necrosis factor cytotoxicity.
- Environmental stresses and nutrients
- A short element required for turning off heat shock transcription factor: evidence that phosphorylation enhances deactivation.
- Increased survival after treatments with anticancer agents of Chinese hamster cells expressing the human Mr 27,000 heat shock protein.
- Three tomato genes code for heat stress transcription factors with a region of remarkable homology to the DNA‐binding domain of the yeast HSF.
- Constitutive expression of human hsp27, Drosophila hsp27, or human alpha B-crystallin confers resistance to TNF- and oxidative stress-induced cytotoxicity in stably transfected murine L929 fibroblasts.
- 1 Progress and Perspectives on the Biology of Heat Shock Proteins and Molecular Chaperones
- DNA binding of heat shock factor to the heat shock element is insufficient for transcriptional activation in murine erythroleukemia cells
- Selection of new HSF1 and HSF2 DNA-binding sites reveals difference in trimer cooperativity
- Tissue-dependent expression of heat shock factor 2 isoforms with distinct transcriptional activities
- Heat Shock Response and Protein Degradation: Regulation of HSF2 by the Ubiquitin-Proteasome Pathway
- Interaction between heat shock factor and hsp70 is insufficient to suppress induction of DNA-binding activity in vivo
- Hemin-induced transcriptional activation of the HSP70 gene during erythroid maturation in K562 cells is due to a heat shock factor-mediated stress response.
- Characterization of a novel chicken heat shock transcription factor, heat shock factor 3, suggests a new regulatory pathway
- The DNA-binding activity of the human heat shock transcription factor is regulated in vivo by hsp70
- The Hsf world: classification and properties of plant heat stress transcription factors.
Cited by
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- Einflüsse von Ausdauertraining auf die Expression von Hitzeschockproteinen und induzierbarer NO-Synthase : eine Analyse auf mRNA-Ebene
- Construction of an Artificial Digenic Network with Epigenetic Properties
- HSP90 as a new therapeutic target for cancer therapy: the story unfolds
- Genetic and Cytogenetic Analysis of the Olive Fruit Fly Bactrocera Oleae(Diptera: Tephritidae)
- Molecular Chaperones in Parkinson’s Disease – Present and Future
- C2PA is a nuclear protein implicated in the heat shock response
- Molecular biology of stress genes in methanogens: potential for bioreactor technology.
- Expression levels of hsc70 and hsp60 are developmentally regulated during B‐cell maturation and not associated to childhood c‐ALL at presentation or relapse
- The allele (A)-110 in the promoter region of the HSP70-1 gene is unfavorable to longevity in women
- Clonal Mosaic Analysis of EMPTY PERICARP2 Reveals Nonredundant Functions of the Duplicated HEAT SHOCK FACTOR BINDING PROTEINs During Maize Shoot Development Sequence data from this article have been deposited with the EMBL/GenBank Data Libraries under accession no. AY450672.
- Dopaminergic neurons in rat ventral midbrain cultures undergo selective apoptosis and form inclusions, but do not up‐regulate iHSP70, following proteasomal inhibition
- Transcriptional malfunctioning of heat shock protein gene expression in spinocerebellar ataxias
- Can the stress protein response be controlled by 'membrane-lipid therapy'?
- How Cells Protect Themselves against Stress?
- Resveratrol Induces the Heat-Shock Response and Protects Human Cells from Severe Heat Stress
- How insects survive the cold: molecular mechanisms—a review
- Cypermethrin elicited responses in heat shock protein and feeding in Caenorhabditis elegans.
- Characterization of an M28 metalloprotease family member residing in the yeast vacuole
- The transcription factor FOXM1 (Forkhead box M1): proliferation-specific expression, transcription factor function, target genes, mouse models, and normal biological roles.
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