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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Expression and regulation of a low-density lipoprotein receptor exon 12 splice variant.
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Expression and regulation of a low-density lipoprotein receptor exon 12 splice variant.

机译:低密度脂蛋白受体外显子12剪接变体的表达和调控。

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摘要

As low-density lipoprotein receptor (LDLR) contributes to cholesterol and amyloid beta homeostasis, insights into LDLR regulation may facilitate our understanding of cardiovascular disease and Alzheimer's disease. Previously, we identified LDLR isoforms that lacked exon 12 or exons 11-12 and that are predicted to encode soluble, dominant negative, LDLR. Moreover, these isoforms were associated with rs688, an exon 12 polymorphism that was associated with LDL-cholesterol and Alzheimer's disease risk. In this study, we present evidence that although the truncated LDLR isoforms are translated in vitro, they represent < 0.1% of CSF proteins. As these LDLR isoforms likely represent a loss of mRNA-encoding functional LDLR, we then focused upon identifying intron-exon boundary and exonic splicing enhancer elements critical to splicing. Exon 12 inclusion is enhanced by altering the 5' splice site in intron 12 towards a consensus splice donor sequence, consistent with its being a weak 5' splice site. Additionally, of the nine evolutionarily conserved putative splicing enhancer regions within exon 12, two regions that flank rs688 were critical to exon 12 inclusion. Overall, these results suggest that LDLR splice variants represent a loss of mRNA encoding functional LDLR and provide insights into the regulatory elements critical for LDLR exon 12 splicing.
机译:由于低密度脂蛋白受体(LDLR)有助于胆固醇和淀粉样β稳态,因此对LDLR调节的见解可能有助于我们对心血管疾病和阿尔茨海默氏病的理解。以前,我们确定了缺少外显子12或外显子11-12的LDLR同工型,并预测其可编码可溶性,显性负性LDLR。此外,这些同工型与rs688有关,这是一个外显子12多态性,与LDL-胆固醇和阿尔茨海默氏病风险相关。在这项研究中,我们提供了证据,尽管截短的LDLR同工型在体外翻译,但它们占CSF蛋白的<0.1%。由于这些LDLR亚型可能代表了mRNA编码功能性LDLR的缺失,因此我们将重点放在鉴定内含子-外显子边界和对剪接至关重要的外显子剪接增强子元件上。通过将内含子12中的5'剪接位点改变为共有剪接供体序列,增强了外显子12的包容性,这与其弱的5'剪接位点相一致。此外,在外显子12内的9个进化保守的假定剪接增强子区域中,rs688侧翼的两个区域对于外显子12的包容至关重要。总体而言,这些结果表明LDLR剪接变体代表了编码功能性LDLR的mRNA的缺失,并提供了对LDLR外显子12剪接至关重要的调控元件的见解。

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