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Polymorphisms in the human glutathione transferase zeta promoter.

机译:人谷胱甘肽转移酶ζ启动子中的多态性。

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OBJECTIVES: The zeta-class glutathione transferase GSTZ1-1 catalyses the glutathione-dependent isomerization of maleylacetoacetate to fumarylacetoacetate in the tyrosine catabolic pathway and the biotransformation of alpha-halo acids, including dichloroacetic acid (DCA). Genetic polymorphisms in the coding sequence of GSTZ1 result in significant changes in enzyme function, and deficiency of GSTZ1-1 in mice causes induction of a range of Phase-II enzymes. In this study, the potential for polymorphisms in regulatory sequences to alter gene transcription was investigated. METHODS: A total of 10 single-nucleotide polymorphisms (SNP) were identified in African and Australian European subjects in a region extending 1.5-kb upstream of the GSTZ1 start of transcription. These SNPs formed at least 10 haplotypes and only two were shared between the two population samples. The effect of these SNPs on gene expression was evaluated by the transient expression of specific alleles fused to a luciferase reporter gene. RESULTS: Of the 10 SNPs identified, only -1002 G>A and -289 C>T caused significant changes in promoter activity. The -1002 G>A SNP converts a v-Myb site to a S8 homeodomain (Prx2) site, and the -289 C>T SNP abolishes an Egr1 binding site. CONCLUSION: These SNPs may alter GSTZ1 expression, which may alter the pharmacokinetics of DCA, which is used therapeutically for the treatment of lactic acidosis.
机译:目的:zeta类谷胱甘肽转移酶GSTZ1-1催化酪氨酸分解代谢途径中谷胱甘肽依赖性的顺丁烯二酰乙酸酯向富马酰乙酰乙酸酯的异构化以及包括二氯乙酸(DCA)在内的α-卤代酸的生物转化。 GSTZ1编码序列中的遗传多态性导致酶功能发生重大变化,而小鼠中GSTZ1-1的缺乏会引起一系列II期酶的诱导。在这项研究中,研究了调控序列中多态性改变基因转录的潜力。方法:在非洲人和澳大利亚欧洲人受试者中,在GSTZ1转录起点上游延伸1.5 kb的区域中共鉴定出10个单核苷酸多态性(SNP)。这些SNP形成至少10个单倍型,并且两个群体样本之间仅共享两个。通过与荧光素酶报道基因融合的特定等位基因的瞬时表达,评估了这些SNP对基因表达的影响。结果:在确定的10个SNP中,只有-1002 G> A和-289 C> T引起启动子活性的显着变化。 -1002 G> A SNP将v-Myb位点转换为S8同源域(Prx2)位点,而-289 C> T SNP废除了Egr1结合位点。结论:这些SNP可能改变GSTZ1的表达,从而可能改变DCA的药代动力学,DCA在治疗上用于治疗乳酸性酸中毒。

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