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Clinical Trials and Observations: Regulatory polymorphism in vitamin K epoxide reductase complex subunit 1 (VKORC1) affects gene expression and warfarin dose requirement

机译:临床试验和观察:维生素K环氧还原酶复合物亚基1(VKORC1)的调控多态性影响基因表达和华法林剂量需求

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摘要

Warfarin dose requirements have been associated with 2 main haplotypes in VKORC1, but the responsible polymorphisms remain unknown. To search for regulatory polymorphisms, we measured allelic mRNA expression of VKORC1 in human liver, heart, and B lymphocytes. The observed 2-fold allelic mRNA expression imbalance narrowed possible candidate SNPs to −1639G>A and 1173C<T. This genotype effect was observed selectively in the liver but not in heart or lymphocytes. In vitro expression of VKORC1 gene constructs, including coding and promoter regions, failed to reveal any genotype effect on transcription and mRNA processing. Chromatin immunoprecipitation with antibodies against acetyl-histone3 and K4-trimethyl-histone3 revealed preferential association of the promoter −1639 G allele with active chromatin, consistent with enhanced mRNA expression. The minor −1639 A allele generates a suppressor E-box binding site, apparently regulating gene expression by a mechanism undetectable with reporter gene assays. A clinical association study demonstrated that promoter SNP −1639G>A, and the tightly linked intron1 SNP 1173C>T, predict warfarin dose more accurately than intron 2 SNP 1542G>C in blacks. Increased warfarin dose requirement in blacks was accounted for by lower frequency of the −1639 A allele. Therefore, −1639G>A is a suitable biomarker for warfarin dosing across ethnic populations.
机译:华法令剂量要求与VKORC1中的2种主要单倍型有关,但负责的多态性仍然未知。为了搜索调节多态性,我们测量了人肝,心脏和B淋巴细胞中VKORC1的等位基因mRNA表达。观察到的2倍等位基因mRNA表达失衡将可能的候选SNPs缩小至-1639G> A和1173C A和紧密连接的intron1 SNP 1173C> T预测华法林剂量比内含子2 SNP 1542G> C更准确。黑人中华法林剂量增加的原因是-1639 A等位基因的频率较低。因此,-1639G> A是用于华法林跨种族人群给药的合适生物标志物。

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