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首页> 外文期刊>Journal of Molecular Biology >The structure of a zeta class glutathione S-transferase from Arabidopsis thaliana: characterisation of a GST with novel active-site architecture and a putative role in tyrosine catabolism.
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The structure of a zeta class glutathione S-transferase from Arabidopsis thaliana: characterisation of a GST with novel active-site architecture and a putative role in tyrosine catabolism.

机译:来自拟南芥的zeta类谷胱甘肽S转移酶的结构:具有新型活性位点结构和酪氨酸分解代谢中假定作用的GST的表征。

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摘要

The cis-trans isomerisation of maleylacetoacetate to fumarylacetoacetate is the penultimate step in the tyrosine/phenylalanine catabolic pathway and has recently been shown to be catalysed by glutathione S-transferase enzymes belonging to the zeta class. Given this primary metabolic role it is unsurprising that zeta class glutathione S-transferases are well conserved over a considerable period of evolution, being found in vertebrates, plants, insects and fungi. The structure of this glutathione S-transferase, cloned from Arabidopsis thaliana, has been solved by single isomorphous replacement with anomalous scattering and refined to a final crystallographic R-factor of 19.6% using data from 25.0 A to 1.65 A. The zeta class enzyme adopts the canonical glutathione S-transferase fold and forms a homodimer with each subunit consisting of 221 residues. In agreement with structures of glutathione S-transferases from the theta and phi classes, a serine residue (Ser17) is present in the active site, at a position that would allow it to stabilise the thiolate anion of glutathione. Site-directed mutagenesis of this residue confirms its importance in catalysis. In addition, the role of a highly conserved cysteine residue (Cys19) present in the active site of the zeta class glutathione S-transferase enzymes is discussed. Copyright 2001 Academic Press.
机译:马来酸乙酰乙酸酯的顺式-反式异构化为富马酸乙酰乙酸酯是酪氨酸/苯丙氨酸分解代谢途径中的倒数第二个步骤,最近已证明是由属于zeta类的谷胱甘肽S-转移酶催化的。鉴于这种主要的新陈代谢作用,在脊椎动物,植物,昆虫和真菌中发现的zeta类谷胱甘肽S-转移酶在相当长的进化过程中都得到了很好的保护,这不足为奇。从拟南芥中克隆的该谷胱甘肽S-转移酶的结构已通过异常散射的单一同构置换得到解决,并使用25.0 A至1.65 A的数据精炼至19.6%的最终结晶R因子。zeta类酶采用正常的谷胱甘肽S-转移酶折叠并形成同源二聚体,每个亚基由221个残基组成。与来自theta和phi类的谷胱甘肽S-转移酶的结构一致,在活性位点存在一个丝氨酸残基(Ser17),其位置可使它稳定谷胱甘肽的硫醇根阴离子。该残基的定点诱变证实了其在催化中的重要性。此外,还讨论了存在于zeta类谷胱甘肽S-转移酶的活性位点中的高度保守的半胱氨酸残基(Cys19)的作用。版权所有2001学术出版社。

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