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Functionally significant insulin-like growth factor I receptor mutations in centenarians

机译:百岁老人中功能上重要的胰岛素样生长因子I受体突变

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摘要

Rather than being a passive, haphazard process of wear and tear, lifespan can be modulated actively by components of the insulin/ insulin-like growth factor I (IGFI) pathway in laboratory animals. Complete or partial loss-of-function mutations in genes encoding components of the insulin/IGFI pathway result in extension of life span in yeasts, worms, flies, and mice. This remarkable conservation throughout evolution suggests that altered signaling in this pathway may also influence human lifespan. On the other hand, evolutionary tradeoffs predict that the laboratory findings may not be relevant to human populations, because of the high fitness cost during early life. Here, we studied the biochemical, phenotypic, and genetic variations in a cohort of Ashkenazi Jewish centenarians, their offspring, and offspring-matched controls and demonstrated a gender-specific increase in serum IGFI associated with a smaller stature in female offspring of centenarians. Sequence analysis of the IGF1 and IGF1 receptor {IGF1R) genes of female centenarians showed overrepresentation of heterozygous mutations in the IGF1R gene among centenarians relative to controls that are associated with high serum IGFI levels and reduced activity of the IGFIR as measured in transformed lymphocytes. Thus, genetic alterations in the human IGF1R that result in altered IGF signaling pathway confer an increase in susceptibility to human longevity, suggesting a role of this pathway in modulation of human lifespan.
机译:寿命不是被动的,偶然的磨损过程,而是可以通过实验动物中胰岛素/类胰岛素生长因子I(IGFI)途径的成分来主动调节。编码胰岛素/ IGFI途径组分的基因中的全部或部分功能丧失突变可延长酵母,蠕虫,果蝇和小鼠的寿命。整个进化过程中这种显着的保守性表明,该途径中信号的改变也可能影响人类的寿命。另一方面,进化折衷预测实验室的发现可能与人群无关,这是因为早年的健身成本很高。在这里,我们研究了一群阿什肯纳兹犹太百岁老人,他们的后代和与之匹配的对照的生化,表型和遗传变异,并证明了血清IGFI的性别特异性增加与百岁老人女性后代的身材矮小有关。对女性百岁老人的IGF1和IGF1受体(IGF1R)基因进行的序列分析显示,相对于与血清IGFI高水平和降低的IGFIR活性(如在转化淋巴细胞中测得)的对照组相比,百岁老人中IGF1R基因的杂合突变的过量表达。因此,导致改变的IGF信号传导途径的人IGF1R的遗传改变赋予了对人类寿命的敏感性增加,表明该途径在调节人类寿命中的作用。

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