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Publication : Long-living growth hormone receptor knockout mice: potential mechanisms of altered stress resistance.

First Author  Brown-Borg HM Year  2009
Journal  Exp Gerontol Volume  44
Issue  1-2 Pages  10-9
PubMed ID  18675334 Mgi Jnum  J:146696
Mgi Id  MGI:3838262 Doi  10.1016/j.exger.2008.07.002
Citation  Brown-Borg HM, et al. (2009) Long-living growth hormone receptor knockout mice: potential mechanisms of altered stress resistance. Exp Gerontol 44(1-2):10-9
abstractText  Endocrine mutant mice have proven invaluable toward the quest to uncover mechanisms underlying longevity. Growth hormone (GH) and insulin-like growth factor (IGF) have been shown to be key players in physiological systems that contribute to aging processes including glucose metabolism, body composition and cellular protection. Examination of these mutant mice across several laboratories has revealed that differences exist in both the direction and magnitude of change, differences that may result in variation in life span. Growth hormone receptor knockout mice lack a functional GH receptor, therefore GH signaling is absent. These mice have been shown to lack the heightened oxidative defense mechanisms observed in other GH mutants yet live significantly longer than wild type mice. In this study, glutathione (GSH) and methionine (MET) metabolism was examined to determine the extent of variation in this mutant in comparison to the Ames dwarf, a mouse that exhibits delayed aging and life span extension of nearly 70%. Components of GSH and MET were altered in GHR KO compared to wild type controls. The results of these experiments suggest that these pathways may be partially responsible for differences observed in stress resistance and the capacity to respond to stressors, that in the long term, affect health and life span.
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