首页> 美国卫生研究院文献>Aging (Albany NY) >Transgenic mice overexpressing glia maturation factor-β an oxidative stress inducible gene show premature aging due to Zmpste24 down-regulation
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Transgenic mice overexpressing glia maturation factor-β an oxidative stress inducible gene show premature aging due to Zmpste24 down-regulation

机译:过度表达神经胶质成熟因子-β(氧化应激诱导基因)的转基因小鼠由于Zmpste24下调而表现出过早衰老

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摘要

Glia Maturation Factor-β (GMF), a brain specific protein, is induced by proteinuria in renal tubules. Ectopic GMF overexpression causes apoptosis in vitro via cellular vulnerability to oxidative stress. In order to examine the roles of GMF in non-brain tissue, we constructed transgenic mice overexpressing GMF (GMF-TG). The GMF-TG mice exhibited appearance phenotypes associated with premature aging. The GMF-TG mice also demonstrated short lifespans and reduced hair regrowth, suggesting an accelerated aging process. The production of an abnormal lamin A, a nuclear envelope protein, plays a causal role in both normal aging and accelerated aging diseases, known as laminopathies. Importantly, we identified the abnormal lamin A (prelamin A), accompanied by a down-regulation of a lamin A processing enzyme (Zmpste24) in the kidney of the GMF-TG mice. The GMF-TG mice showed accelerated aging in the kidney, compared with wild-type mice, showing increased TGF-β1, CTGF gene and serum creatinine. The gene expression of p21/waf1 was increased at an earlier stage of life, at 10 weeks, which was in turn down-regulated at a later stage, at 60 weeks. In conclusion, we propose that GMF-TG mice might be a novel mouse model of accelerated aging, due to the abnormal lamin A.
机译:胶质细胞成熟因子-β(GMF)是一种大脑特异性蛋白,由肾小管中的蛋白尿诱导。异位基因GMF的过度表达通过细胞对氧化应激的脆弱性导致体外凋亡。为了检查GMF在非脑组织中的作用,我们构建了过表达GMF(GMF-TG)的转基因小鼠。 GMF-TG小鼠表现出与早衰相关的外观表型。 GMF-TG小鼠还显示出较短的寿命和减少的毛发再生长,表明其衰老过程加快。异常核纤层蛋白A(一种核被膜蛋白)的产生在正常衰老和加速衰老疾病(被称为lamopathies)中均起着因果作用。重要的是,我们在GMF-TG小鼠的肾脏中发现了异常的层粘连蛋白A(prelamin A),并伴随着层粘连蛋白A加工酶(Zmpste24)的下调。与野生型小鼠相比,GMF-TG小鼠在肾脏中显示出加速的衰老,显示出TGF-β1,CTGF基因和血清肌酐升高。 p21 / waf1的基因表达在生命的早期阶段(第10周)增加,而在后期阶段(第60周)则下调。总之,我们认为GMF-TG小鼠可能是由于Lamin A异常而加速衰老的新型小鼠模型。

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