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首页> 外文期刊>DNA and Cell Biology >Mutual Effect of rs688 and rs5925 in Regulating Low-Density Lipoprotein Receptor Splicing
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Mutual Effect of rs688 and rs5925 in Regulating Low-Density Lipoprotein Receptor Splicing

机译:rs688和rs5925在调节低密度脂蛋白受体剪接中的相互作用

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Analysis of the low-density lipoprotein receptor (LDLR) gene based on the rs688 and rs5925 genetic polymorphisms has provided evidence suggesting that haplotypes related to rs688 and rs5925 are associated with ischemic cerebrovascular diseases. Both rs688 and rs5925 have been empirically identified as exon-splicing enhancers in silico, and rs688 has been shown to be a functional polymorphism that modulates LDLR exon 12 splicing efficiency both in vitro and in vivo. The aim of this study was to evaluate whether rs688 and rs5925 and their haplotypes may alter the splicing efficiency of exons 12 and 13 both in vivo and in vitro. When the minigenes were evaluated for splicing efficiency, we found that converting rs688C to the T allele reduced exon 12 splicing efficiency. In parallel, converting rs688T to the C allele increased the efficiency of exon 12 inclusion. The apparent difference in splicing efficiency was 9.36%+/- 2.58% between the C and T alleles. When rs688C existed in the minigene, the major and minor rs5925 alleles were also sufficient to account for the differences in splicing efficiency of LDLR involving exon 13. The apparent splicing efficiency difference was 5.43%+/- 2.87%. Sequential mutations of rs688 and rs5925 were performed to generate four different haplotypes in the LDLR minigene system. The splicing efficiencies for the haplotypes CC, CT, TC, and TT were 79.60%+/- 1.38%, 76.68%+/- 0.85%, 69.02%+/- 1.79%, and 68.54%+/- 1.38%, respectively. The splicing efficiency of the four haplotype groups differed significantly. In vivo analysis of human leukocyte samples was also compatible with in vitro analysis, indicating a mutual effect between rs688 and rs5925 in regulating LDLR splicing efficiency.
机译:基于rs688和rs5925遗传多态性的低密度脂蛋白受体(LDLR)基因的分析提供了证据,表明与rs688和rs5925相关的单倍型与缺血性脑血管疾病有关。 rs688和rs5925都已根据经验被鉴定为计算机中的外显子剪接增强子,并且rs688已被证明是一种功能性多态性,可在体外和体内调节LDLR外显子12剪接效率。这项研究的目的是评估rs688和rs5925及其单倍型是否可以在体内和体外改变外显子12和13的剪接效率。当评估小基因的剪接效率时,我们发现将rs688C转换为T等位基因会降低外显子12剪接效率。同时,将rs688T转换为C等位基因可提高外显子12包涵体的效率。 C和T等位基因之间的拼接效率的表观差异为9.36%+ /-2.58%。当在小基因中存在rs688C时,主要和次要rs5925等位基因也足以说明涉及外显子13的LDLR剪接效率的差异。表观剪接效率差异为5.43%+ /-2.87%。进行了rs688和rs5925的顺序突变,以在LDLR minigene系统中生成四种不同的单倍型。单倍型CC,CT,TC和TT的拼接效率分别为79.60%+ /-1.38%,76.68%+ /-0.85%,69.02%+ /-1.79%和68.54%+ /-1.38%。四个单倍型组的拼接效率显着不同。人白细胞样品的体内分析也与体外分析兼容,表明rs688和rs5925之间在调节LDLR剪接效率方面具有相互影响。

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