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沉默单核苷酸多态性:对基因功能和表型的影响。

Silent SNPs: impact on gene function and phenotype.

作者信息

Komar Anton A

机构信息

Cleveland State University, Department of Biological, Geological and Environmental Sciences, Cleveland, OH 44115, USA.

出版信息

Pharmacogenomics. 2007 Aug;8(8):1075-80. doi: 10.2217/14622416.8.8.1075.

Abstract

Evaluation of: Kimchi-Sarfaty C, Oh JM, Kim IW et al.: A 'silent' polymorphism in the MDR1 gene changes substrate specificity. Science 315, 525-528 (2007) [1] . Individuals carrying silent SNPs in the MDR1 gene encoding P-glycoprotein sometimes reveal altered P-glycoprotein pharmacokinetics. There is no rational explanation for why silent SNPs might have such effects, especially when no change in P-glycoprotein mRNA and protein expression levels has been observed. The purpose of this study was to perform careful ex vivo (in cells) analysis of the effects of the three polymorphisms (C1236T, G2677T C3435T) on P-glycoprotein expression and activity. As a result, it has been shown that silent polymorphisms (in particular, C3435T) in MDR1 can alter P-glycoprotein conformation and protein activity/substrate specificity. This study is of immense importance as it demonstrates for the first time that naturally occurring silent SNPs can lead to the synthesis of protein product with the same amino acid sequence but different structural and functional properties. Thus, silent SNPs should no longer be neglected in determining the likelihood of development of various diseases, and should be taken into account in personalized drug treatment and development programs.

摘要

评估

金奇-萨尔法蒂C、吴贞美、金伊沃等人:MDR1基因中的一种“沉默”多态性改变底物特异性。《科学》315卷,525 - 528页(2007年)[1]。携带编码P-糖蛋白的MDR1基因沉默单核苷酸多态性(SNP)的个体有时会表现出P-糖蛋白药代动力学的改变。对于沉默SNP为何会有这种效应,尤其是在未观察到P-糖蛋白mRNA和蛋白质表达水平变化的情况下,尚无合理的解释。本研究的目的是对三种多态性(C1236T、G2677T C3435T)对P-糖蛋白表达和活性的影响进行细致的体外(细胞内)分析。结果表明,MDR1中的沉默多态性(特别是C3435T)可改变P-糖蛋白的构象以及蛋白质活性/底物特异性。这项研究极为重要,因为它首次证明天然存在的沉默SNP可导致合成具有相同氨基酸序列但结构和功能特性不同的蛋白质产物。因此,在确定各种疾病发生的可能性时,不应再忽视沉默SNP,在个性化药物治疗和研发项目中应予以考虑。

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