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Invited Review: Heat shock proteins: modifying factors in physiological stress responses and acquired thermotolerance

Journal of Applied Physiology · 2002 · Vol. 92(5) · pp. 2177–2186
K. C. Kregel

Abstract

Cells from virtually all organisms respond to a variety of stresses by the rapid synthesis of a highly conserved set of polypeptides termed heat shock proteins (HSPs). The precise functions of HSPs are unknown, but there is considerable evidence that these stress proteins are essential for survival at both normal and elevated temperatures. HSPs also appear to play a critical role in the development of thermotolerance and protection from cellular damage associated with stresses such as ischemia, cytokines, and energy depletion. These observations suggest that HSPs play an important role in both normal cellular homeostasis and the stress response. This mini-review examines recent evidence and hypotheses suggesting that the HSPs may be important modifying factors in cellular responses to a variety of physiologically relevant conditions such as hyperthermia, exercise, oxidative stress, metabolic challenge, and aging.

Heat shock proteins researchthermodynamics and calorimetric analysesPhysiological and biochemical adaptationsHeat shock proteinCell biologyBiologyHeat shockOxidative stressCellular stress responseHomeostasisShock (circulatory)Hsp70Fight-or-flight response

MeSH terms

Adaptation, PhysiologicalAgingAnimalsBody Temperature RegulationHeat-Shock ProteinsHumansStress, PhysiologicalSignal TransductionHSP70 Heat-Shock ProteinsHeat-Shock Response
Citations
1,439
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References
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American Journal of Physiology-Heart and Circulatory Physiology · 2001 · 450 citations
A new puffing pattern induced by temperature shock and DNP in drosophila
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Free radicals and tissue damage produced by exercise
Biochemical and Biophysical Research Communications · 1982 · 1,732 citations
THE HEAT-SHOCK RESPONSE
Annual Review of Biochemistry · 1986 · 4,601 citations
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