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首页> 外文期刊>The journal of clinical investigation >Progerin and telomere dysfunction collaborate to trigger cellular senescence in normal human fibroblasts
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Progerin and telomere dysfunction collaborate to trigger cellular senescence in normal human fibroblasts

机译:Progerin和端粒功能障碍共同触发正常人成纤维细胞的细胞衰老

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Hutchinson-Gilford progeria syndrome (HGPS), a devastating premature aging disease, is caused by a point mutation in the lamin A gene ( LMNA ). This mutation constitutively activates a cryptic splice donor site, resulting in a mutant lamin A protein known as progerin. Recent studies have demonstrated that progerin is also produced at low levels in normal human cells and tissues. However, the cause-and-effect relationship between normal aging and progerin production in normal individuals has not yet been determined. In this study, we have shown in normal human fibroblasts that progressive telomere damage during cellular senescence plays a causative role in activating progerin production. Progressive telomere damage was also found to lead to extensive changes in alternative splicing in multiple other genes. Interestingly, elevated progerin production was not seen during cellular senescence that does not entail telomere shortening. Taken together, our results suggest a synergistic relationship between telomere dysfunction and progerin production during the induction of cell senescence, providing mechanistic insight into how progerin may participate in the normal aging process.
机译:Hutchinson-Gilford早衰综合症(HGPS)是毁灭性的过早衰老疾病,是由Lamin A基因(LMNA)的点突变引起的。该突变组成性地激活了一个隐秘的剪接供体位点,从而产生了一种称为progerin的突变型lamin A蛋白。最近的研究表明,正常人的细胞和组织中progerin的含量也很低。但是,尚未确定正常人的正常衰老与早老素产生之间的因果关系。在这项研究中,我们已经在正常的人类成纤维细胞中表明,在细胞衰老过程中渐进性端粒损伤在激活早衰素产生中起着致病作用。还发现渐进性端粒损伤导致多种其他基因的选择性剪接发生广泛变化。有趣的是,在细胞衰老过程中未观察到早老蛋白产生的增加,这并不意味着端粒缩短。两者合计,我们的结果表明,在细胞衰老的诱导过程中,端粒功能障碍与早老素产生之间存在协同关系,从而提供了关于早老素如何参与正常衰老过程的机制性见解。

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