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年龄相关的人类肝线粒体谷胱甘肽转移酶 Zeta1 的表达和活性变化。

Age-Related Changes in Expression and Activity of Human Hepatic Mitochondrial Glutathione Transferase Zeta1.

机构信息

Department of Medicinal Chemistry (G.Z., M.O.J., M.G.S., S.C.J.), Department of Pharmacotherapy and Translational Research (T.L.), Center for Pharmacogenomics (T.L.), and Departments of Medicine and Biochemistry and Molecular Biology (P.W.S.), University of Florida, Gainesville, Florida; and Department of Pediatrics, Medical College of Wisconsin, Milwaukee, Wisconsin (P.S.).

Department of Medicinal Chemistry (G.Z., M.O.J., M.G.S., S.C.J.), Department of Pharmacotherapy and Translational Research (T.L.), Center for Pharmacogenomics (T.L.), and Departments of Medicine and Biochemistry and Molecular Biology (P.W.S.), University of Florida, Gainesville, Florida; and Department of Pediatrics, Medical College of Wisconsin, Milwaukee, Wisconsin (P.S.)

出版信息

Drug Metab Dispos. 2018 Aug;46(8):1118-1128. doi: 10.1124/dmd.118.081810. Epub 2018 May 31.

Abstract

Glutathione transferase zeta1 (GSTZ1) catalyzes glutathione (GSH)-dependent dechlorination of dichloroacetate (DCA), an investigational drug with therapeutic potential in metabolic disorders and cancer. GSTZ1 is expressed in both hepatic cytosol and mitochondria. Here, we examined the ontogeny and characterized the properties of human mitochondrial GSTZ1. GSTZ1 expression and activity with DCA were determined in 103 human hepatic mitochondrial samples prepared from livers of donors aged 1 day to 84 years. DNA from each sample was genotyped for three common GSTZ1 functional single nucleotide polymorphisms. Expression of mitochondrial GSTZ1 protein increased in an age-dependent manner to a plateau after age 21 years. Activity with DCA correlated with expression, after taking into account the somewhat higher activity of samples that were homo- or heterozygous for GSTZ1A. In samples from livers with the GSTZ1C variant, apparent enzyme kinetic constants for DCA and GSH were similar for mitochondria and cytosol after correcting for the loss of GSH observed in mitochondrial incubations. In the presence of 38 mM chloride, mitochondrial GSTZ1 exhibited shorter half-lives of inactivation compared with the cytosolic enzyme ( = 0.017). GSTZ1 protein isolated from mitochondria was shown by mass spectrometry to be identical to cytosolic GSTZ1 protein in the covered primary protein sequence. In summary, we report age-related development in the expression and activity of human hepatic mitochondrial GSTZ1 does not have the same pattern as that reported for cytosolic GSTZ1. Some properties of cytosolic and mitochondrial GSTZ1 differed, but these were not related to differences in amino acid sequence or post-translationally modified residues.

摘要

谷胱甘肽转移酶 ζ1(GSTZ1)催化谷胱甘肽(GSH)依赖的二氯乙酸(DCA)脱氯反应,DCA 是一种具有代谢紊乱和癌症治疗潜力的研究药物。GSTZ1 在肝细胞质和线粒体中均有表达。在此,我们研究了人类线粒体 GSTZ1 的个体发育情况,并对其特性进行了表征。在从年龄为 1 天至 84 岁的供体肝脏中制备的 103 个人类肝线粒体样本中,测定了 GSTZ1 与 DCA 的表达和活性。对每个样本的 DNA 进行了三种常见 GSTZ1 功能单核苷酸多态性的基因分型。线粒体 GSTZ1 蛋白的表达随年龄呈依赖性增加,在 21 岁以后达到平台期。在考虑到 GSTZ1A 纯合或杂合样本的活性稍高的情况下,DCA 活性与表达相关。在具有 GSTZ1C 变体的肝脏样本中,校正线粒体孵育中观察到的 GSH 损失后,DCA 和 GSH 的表观酶动力学常数对于线粒体和细胞质相似。在 38mM 氯离子存在下,与胞质酶相比,线粒体 GSTZ1 的失活半衰期较短(=0.017)。通过质谱法从线粒体中分离出的 GSTZ1 蛋白在涵盖的主要蛋白质序列中与胞质 GSTZ1 蛋白相同。总之,我们报告了人类肝线粒体 GSTZ1 的表达和活性与年龄相关的发展模式与胞质 GSTZ1 不同。胞质和线粒体 GSTZ1 的一些特性存在差异,但这些差异与氨基酸序列或翻译后修饰的残基无关。

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