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生长激素受体基因敲除(GHR-KO)小鼠中胰岛素敏感性的特异性抑制减弱了缓慢衰老的表型特征。

Specific suppression of insulin sensitivity in growth hormone receptor gene-disrupted (GHR-KO) mice attenuates phenotypic features of slow aging.

作者信息

Arum Oge, Boparai Ravneet K, Saleh Jamal K, Wang Feiya, Dirks Angela L, Turner Jeremy G, Kopchick John J, Liu Jun-Li, Khardori Romesh K, Bartke Andrzej

机构信息

Department of Internal Medicine, Southern Illinois University-School of Medicine, Springfield, IL, 62794, USA.

出版信息

Aging Cell. 2014 Dec;13(6):981-1000. doi: 10.1111/acel.12262. Epub 2014 Sep 20.

Abstract

In addition to their extended lifespans, slow-aging growth hormone receptor/binding protein gene-disrupted (knockout) (GHR-KO) mice are hypoinsulinemic and highly sensitive to the action of insulin. It has been proposed that this insulin sensitivity is important for their longevity and increased healthspan. We tested whether this insulin sensitivity of the GHR-KO mouse is necessary for its retarded aging by abrogating that sensitivity with a transgenic alteration that improves development and secretory function of pancreatic β-cells by expressing Igf-1 under the rat insulin promoter 1 (RIP::IGF-1). The RIP::IGF-1 transgene increased circulating insulin content in GHR-KO mice, and thusly fully normalized their insulin sensitivity, without affecting the proliferation of any non-β-cell cell types. Multiple (nonsurvivorship) longevity-associated physiological and endocrinological characteristics of these mice (namely beneficial blood glucose regulatory control, altered metabolism, and preservation of memory capabilities) were partially or completely normalized, thus supporting the causal role of insulin sensitivity for the decelerated senescence of GHR-KO mice. We conclude that a delayed onset and/or decreased pace of aging can be hormonally regulated.

摘要

除了寿命延长外,生长激素受体/结合蛋白基因敲除(GHR-KO)小鼠胰岛素分泌不足且对胰岛素作用高度敏感。有人提出,这种胰岛素敏感性对它们的长寿和健康寿命的延长很重要。我们通过一种转基因改造消除了GHR-KO小鼠的这种胰岛素敏感性,该改造通过在大鼠胰岛素启动子1(RIP::IGF-1)下表达Igf-1来改善胰腺β细胞的发育和分泌功能,以此来测试GHR-KO小鼠的这种胰岛素敏感性对其延缓衰老是否必要。RIP::IGF-1转基因增加了GHR-KO小鼠的循环胰岛素含量,从而使其胰岛素敏感性完全恢复正常,且不影响任何非β细胞类型的增殖。这些小鼠的多种(非生存)与长寿相关的生理和内分泌特征(即有益的血糖调节控制、代谢改变和记忆能力的保留)部分或完全恢复正常,从而支持了胰岛素敏感性对GHR-KO小鼠衰老减速的因果作用。我们得出结论,衰老的延迟发生和/或减缓速度可以通过激素调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/039f/4326932/938343f2e854/acel0013-0981-f1.jpg

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