Literature DB >> 22031780

Hormonal modulation of the heat shock response: insights from fish with divergent cortisol stress responses.

Sacha LeBlanc1, Erik Höglund, Kathleen M Gilmour, Suzanne Currie.   

Abstract

Acute temperature stress in animals results in increases in heat shock proteins (HSPs) and stress hormones. There is evidence that stress hormones influence the magnitude of the heat shock response; however, their role is equivocal. To determine whether and how stress hormones may affect the heat shock response, we capitalized on two lines of rainbow trout specifically bred for their high (HR) and low (LR) cortisol response to stress. We predicted that LR fish, with a low cortisol but high catecholamine response to stress, would induce higher levels of HSPs after acute heat stress than HR trout. We found that HR fish have significantly higher increases in both catecholamines and cortisol compared with LR fish, and LR fish had no appreciable stress hormone response to heat shock. This unexpected finding prevented further interpretation of the hormonal modulation of the heat shock response but provided insight into stress-coping styles and environmental stress. HR fish also had a significantly greater and faster heat shock response and less oxidative protein damage than LR fish. Despite these clear differences in the physiological and cellular responses to heat shock, there were no differences in the thermal tolerance of HR and LR fish. Our results support the hypothesis that responsiveness to environmental change underpins the physiological differences in stress-coping styles. Here, we demonstrate that the heat shock response is a distinguishing feature of the HR and LR lines and suggest that it may have been coselected with the hormonal responses to stress.

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Year:  2011        PMID: 22031780     DOI: 10.1152/ajpregu.00196.2011

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  13 in total

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2.  Can´t beat the heat? Importance of cardiac control and coronary perfusion for heat tolerance in rainbow trout.

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5.  Linking physiological and cellular responses to thermal stress: β-adrenergic blockade reduces the heat shock response in fish.

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7.  Differential Branchial Response of Low Salinity Challenge Induced Prolactin in Active and Passive Coping Style Olive Flounder.

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8.  Differential hypoxic tolerance is mediated by activation of heat shock response and nitric oxide pathway.

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Journal:  Cell Stress Chaperones       Date:  2014-03-04       Impact factor: 3.667

9.  High survivorship after catch-and-release fishing suggests physiological resilience in the endothermic shortfin mako shark (Isurus oxyrinchus).

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10.  Can we predict personality in fish? Searching for consistency over time and across contexts.

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