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Reversal of the cellular phenotype in the premature aging disease Hutchinson-Gilford progeria syndrome.

机译:早衰Hutchinson-Gilford早衰综合症中细胞表型的逆转。

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摘要

Hutchinson-Gilford progeria syndrome (HGPS) is a childhood premature aging disease caused by a spontaneous point mutation in lamin A (encoded by LMNA), one of the major architectural elements of the mammalian cell nucleus. The HGPS mutation activates an aberrant cryptic splice site in LMNA pre-mRNA, leading to synthesis of a truncated lamin A protein and concomitant reduction in wild-type lamin A. Fibroblasts from individuals with HGPS have severe morphological abnormalities in nuclear envelope structure. Here we show that the cellular disease phenotype is reversible in cells from individuals with HGPS. Introduction of wild-type lamin A protein does not rescue the cellular disease symptoms. The mutant LMNA mRNA and lamin A protein can be efficiently eliminated by correction of the aberrant splicing event using a modified oligonucleotide targeted to the activated cryptic splice site. Upon splicing correction, HGPS fibroblasts assume normal nuclear morphology, the aberrant nuclear distribution and cellular levels of lamina-associated proteins are rescued, defects in heterochromatin-specific histone modifications are corrected and proper expression of several misregulated genes is reestablished. Our results establish proof of principle for the correction of the premature aging phenotype in individuals with HGPS.
机译:Hutchinson-Gilford早衰综合症(HGPS)是一种由lamin A(由LMNA编码)的自发点突变引起的儿童早衰疾病,Lamin A是哺乳动物细胞核的主要结构元素之一。 HGPS突变激活了LMNA pre-mRNA中异常的隐蔽剪接位点,导致合成了截短的lamin A蛋白并伴随着野生型lamin A的减少。来自HGPS个体的成纤维细胞在核被膜结构中具有严重的形态异常。在这里,我们显示细胞疾病表型在患有HGPS的个体的细胞中是可逆的。野生型lamin A蛋白的引入不能挽救细胞疾病的症状。突变的LMNA mRNA和核纤层蛋白A蛋白可通过使用靶向活化的隐蔽剪接位点的修饰寡核苷酸校正异常剪接事件而有效消除。进行剪接校正后,HGPS成纤维细胞呈现正常的核形态,挽救了椎板相关蛋白的异常核分布和细胞水平,纠正了异染色质特异性组蛋白修饰中的缺陷,并重新建立了一些失调基因的正确表达。我们的研究结果为纠正HGPS患者的过早衰老表型建立了原理证明。

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