与冠状动脉疾病相关的LIPA(溶酶体酸性脂肪酶)变异的功能特征

T. Evans, Xiangyu Zhang, Reece E Clark, A. Alisio, Eric Song, Hanrui Zhang, M. Reilly, N. Stitziel, B. Razani
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引用次数: 13

摘要

目的:溶酶体酸性脂肪酶(lysosomal acid lipase,简称ipa)介导胆固醇酯水解,具有罕见功能缺失突变的患者可发生高胆固醇血症和严重疾病。冠状动脉疾病的全基因组关联研究已经确定了LIPA中几个紧密相关的常见内含子风险变异,这些变异出乎意料地与mRNA表达增加相关。然而,外显子变异(rs1051338导致T16P)与内含子变异连锁,位于信号肽区,据推测会破坏运输。我们试图从功能上研究该基因座对LIPA的净影响,以及rs1051338是否可以破坏LIPA的加工和功能,从而解释冠状动脉疾病的风险。方法和结果:在从一大群健康个体中分离的单核细胞中,我们证明了外显子和内含子风险变异与LIPA酶活性升高相关,同时转录物水平升高。为了从功能上分离rs1051338的影响,我们研究了几种体外过表达系统,一致地观察到LIPA的表达、加工、活性或分泌没有差异。此外,我们还鉴定了第二种常见的外显子编码变异(rs1051339),该变异与rs1051338类似,预计会改变LIPA信号肽的切割,但与内含子变异无关。rs1051339也不影响体外LIPA功能,没有冠状动脉疾病风险。结论我们的研究结果表明,信号肽中常见的LIPA外显子变异的功能意义很小,提示冠状动脉疾病的风险与与内含子变异相关的LIPA功能增加有关。了解斑块中LIPA功能的机制和细胞特异性背景对于了解其与心血管风险的关联是必要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional Characterization of LIPA (Lysosomal Acid Lipase) Variants Associated With Coronary Artery Disease.
OBJECTIVE LIPA (lysosomal acid lipase) mediates cholesteryl ester hydrolysis, and patients with rare loss-of-function mutations develop hypercholesterolemia and severe disease. Genome-wide association studies of coronary artery disease have identified several tightly linked, common intronic risk variants in LIPA which unexpectedly associate with increased mRNA expression. However, an exonic variant (rs1051338 resulting in T16P) in linkage with intronic variants lies in the signal peptide region and putatively disrupts trafficking. We sought to functionally investigate the net impact of this locus on LIPA and whether rs1051338 could disrupt LIPA processing and function to explain coronary artery disease risk. Approach and Results: In monocytes isolated from a large cohort of healthy individuals, we demonstrate both exonic and intronic risk variants are associated with increased LIPA enzyme activity coincident with the increased transcript levels. To functionally isolate the impact of rs1051338, we studied several in vitro overexpression systems and consistently observed no differences in LIPA expression, processing, activity, or secretion. Further, we characterized a second common exonic coding variant (rs1051339), which is predicted to alter LIPA signal peptide cleavage similarly to rs1051338, yet is not linked to intronic variants. rs1051339 also does not impact LIPA function in vitro and confers no coronary artery disease risk. CONCLUSIONS Our findings show that common LIPA exonic variants in the signal peptide are of minimal functional significance and suggest coronary artery disease risk is instead associated with increased LIPA function linked to intronic variants. Understanding the mechanisms and cell-specific contexts of LIPA function in the plaque is necessary to understand its association with cardiovascular risk.
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