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首页> 外文期刊>The journals of gerontology.Series A. Biological sciences and medical sciences >Decreased levels of proapoptotic factors and increased key regulators of mitochondrial biogenesis constitute new potential beneficial features of long-lived growth hormone receptor gene-disrupted mice.
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Decreased levels of proapoptotic factors and increased key regulators of mitochondrial biogenesis constitute new potential beneficial features of long-lived growth hormone receptor gene-disrupted mice.

机译:凋亡因子水平的降低和线粒体生物发生关键调节剂的增加,构成了长寿命生长激素受体基因破坏小鼠的新潜在有益特征。

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摘要

Decreased somatotrophic signaling is among the most important mechanisms associated with extended longevity. Mice homozygous for the targeted disruption of the growth hormone (GH) receptor gene (GH receptor knockout; GHRKO) are obese and dwarf, are characterized by a reduced weight and body size, undetectable levels of GH receptor, high concentration of serum GH, and greatly reduced plasma levels of insulin and insulin-like growth factor-I, and are remarkably long lived. Recent results suggest new features of GHRKO mice that may positively affect longevity-decreased levels of proapoptotic factors and increased levels of key regulators of mitochondrial biogenesis. The alterations in levels of the proapoptotic factors and key regulators of mitochondrial biogenesis were not further improved by two other potential life-extending interventions-calorie restriction and visceral fat removal. This may attribute the primary role to GH resistance in the regulation of apoptosis and mitochondrial biogenesis in GHRKO mice in terms of increased life span.
机译:营养缺陷性信号的减少是与延长寿命相关的最重要的机制之一。靶向破坏生长激素(GH)受体基因(GH受体敲除; GHRKO)的纯合小鼠是肥胖和矮小的,其特点是体重和体型减少,GH受体水平无法检测,血清GH浓度高以及大大降低了血浆中的胰岛素和类胰岛素生长因子-I的水平,并且寿命很长。最近的结果表明,GHRKO小鼠的新特征可能会积极影响寿命降低的促凋亡因子水平和线粒体生物发生关键调节因子水平的增加。线粒体生物发生的促凋亡因子和关键调节因子水平的变化没有通过其他两种潜在的延长生命的干预措施(热量限制和内脏脂肪去除)得到进一步改善。就寿命的延长而言,这可能归因于GH抵抗在GHRKO小鼠的凋亡和线粒体生物发生的调节中的主要作用。

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