首页> 外文期刊>The Biochemical Journal >Human glutathione transferase A4-4: an alpha class enzyme with high catalytic efficiency in the conjugation of 4-hydroxynonenal and other genotoxic products of lipid peroxidation.
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Human glutathione transferase A4-4: an alpha class enzyme with high catalytic efficiency in the conjugation of 4-hydroxynonenal and other genotoxic products of lipid peroxidation.

机译:人谷胱甘肽转移酶A4-4:一种α类酶,在结合4-羟基壬烯醛和脂质过氧化的其他遗传毒性产物中具有高催化效率。

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摘要

A sequence encoding a novel glutathione transferase, GST A4-4, has been identified in a human fetal brain cDNA library. The protein has been produced in Escherichia coli after optimization of the codon usage for high-level heterologous expression. The dimeric protein has a subunit molecular mass of 25704 Da based on the deduced amino acid composition. Human GST A4-4 is a member of the Alpha class but shows only 53% amino acid sequence identity with the major liver enzyme GST A1-1. High catalytic efficiency with 4-hydroxyalkenals and other cytotoxic and mutagenic products of radical reactions and lipid peroxidation is a significant feature of GST A4-4. The kcat/Km values for 4-hydroxynonenal and 4-hydroxydecenal are > 3 x 10(6) M-1. s-1, several orders of magnitude higher than the values for conventional GST substrates. 4-Hydroxynonenal and other reactive electrophiles produced by oxidative metabolism have been linked to aging, atherosclerosis, cataract formation, Parkinson's disease and Alzheimer's disease, as well as other degenerative human conditions, suggesting that human GST A4-4 fulfills an important protective role and that variations in its expression may have significant pathophysiological consequences.
机译:在人类胎儿脑cDNA文库中已鉴定出编码新型谷胱甘肽转移酶GST A4-4的序列。优化用于高级异源表达的密码子使用后,已在大肠杆菌中生产了该蛋白。基于推导的氨基酸组成,二聚体蛋白质具有25704Da的亚单位分子量。人GST A4-4是Alpha类成员,但与主要肝酶GST A1-1仅显示53%的氨基酸序列同一性。 GST A4-4的显着特征是4-羟基烯醛以及自由基反应和脂质过氧化作用的其他细胞毒性和诱变产物具有高催化效率。 4-羟基壬烯醛和4-羟基癸烯醛的kcat / Km值> 3 x 10(6)M-1。 s-1,比常规GST基材的值高几个数量级。氧化代谢产生的4-羟壬醛和其他反应性亲电试剂与衰老,动脉粥样硬化,白内障形成,帕金森氏病和阿尔茨海默氏病以及其他退化性人类疾病有关,这表明人GST A4-4发挥了重要的保护作用,并且其表达的变化可能具有重大的病理生理后果。

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