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首页> 外文期刊>Human Molecular Genetics >Activating the synthesis of progerin, the mutant prelamin A in Hutchinson-Gilford progeria syndrome, with antisense oligonucleotides.
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Activating the synthesis of progerin, the mutant prelamin A in Hutchinson-Gilford progeria syndrome, with antisense oligonucleotides.

机译:用反义寡核苷酸激活哈金森-吉尔福德早衰综合症中的早老蛋白(突变型prelamin A)的合成。

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摘要

Hutchinson-Gilford progeria syndrome (HGPS) is caused by point mutations that increase utilization of an alternate splice donor site in exon 11 of LMNA (the gene encoding lamin C and prelamin A). The alternate splicing reduces transcripts for wild-type prelamin A and increases transcripts for a truncated prelamin A (progerin). Here, we show that antisense oligonucleotides (ASOs) against exon 11 sequences downstream from the exon 11 splice donor site promote alternate splicing in both wild-type and HGPS fibroblasts, increasing the synthesis of progerin. Indeed, wild-type fibroblasts transfected with these ASOs exhibit progerin levels similar to (or greater than) those in fibroblasts from HGPS patients. This progerin was farnesylated, as judged by metabolic labeling studies. The synthesis of progerin in wild-type fibroblasts was accompanied by the same nuclear shape and gene-expression perturbations observed in HGPS fibroblasts. An ASO corresponding to the 5' portion of intron 11 also promoted alternate splicing. In contrast, an ASO against exon 11 sequences 5' to the alternate splice site reduced alternate splicing in HGPS cells and modestly lowered progerin levels. Thus, different ASOs can be used to increase or decrease 'HGPS splicing'. ASOs represent a new and powerful tool for recreating HGPS pathophysiology in wild-type cells.
机译:Hutchinson-Gilford早衰综合征(HGPS)是由点突变引起的,这些点突变增加了LMNA外显子11(编码层粘连蛋白C和层粘连蛋白A的基因)中另一个剪接供体位点的利用。备用剪接可减少野生型prelamin A的转录本,并增加截短的prelamin A(progerin)的转录本。在这里,我们显示针对外显子11剪接供体位点下游的外显子11序列的反义寡核苷酸(ASOs)促进野生型和HGPS成纤维细胞中的交替剪接,增加了早老蛋白的合成。确实,用这些ASO转染的野生型成纤维细胞显示出与(或高于)HGPS患者成纤维细胞中的早老蛋白水平。根据代谢标记研究判断,早孕素被法尼基化。野生型成纤维细胞中progerin的合成伴随着在HGPS成纤维细胞中观察到的相同核形状和基因表达扰动。对应于内含子11的5'部分的ASO也促进了交替剪接。相反,针对选择性剪接位点的外显子11序列5'的ASO减少了HGPS细胞中的选择性剪接,并适度降低了早老蛋白水平。因此,可以使用不同的ASO来增加或减少“ HGPS拼接”。 ASO代表了一种新的强大工具,可在野生型细胞中重建HGPS病理生理。

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