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人肝脏线粒体乙醛脱氢酶。一级结构、与胞质酶的差异及功能关联。

Mitochondrial aldehyde dehydrogenase from human liver. Primary structure, differences in relation to the cytosolic enzyme, and functional correlations.

作者信息

Hempel J, Kaiser R, Jörnvall H

出版信息

Eur J Biochem. 1985 Nov 15;153(1):13-28. doi: 10.1111/j.1432-1033.1985.tb09260.x.

Abstract

The 500-residue amino acid sequence of the subunit of mitochondrial human liver aldehyde dehydrogenase is reported. It is the first structure determined for this enzyme type from any species, and is based on peptides from treatments with trypsin, CNBr, staphylococcal Glu-specific protease, and hydroxylamine. The chain is not blocked (in contrast to that of the acetylated cytosolic enzyme form), but shows N-terminal processing heterogeneity over the first seven positions. Otherwise, no evidence for subunit microheterogeneities was obtained. The structure displays 68% positional identity with that of the corresponding cytosolic enzyme, and comparisons allow functional interpretations for several segments. A region with segments suggested to participate in coenzyme binding is the most highly conserved long segment of the entire structure (positions 194-274). Cys-302, identified in the cytosolic enzyme in relation to the disulfiram reaction, is also present in the mitochondrial enzyme. A new model of the active site appears possible and involves a hydrophobic cleft. Near-total lack of conservation of the N-terminal segments may reflect a role of the N-terminal region in signaling the transport of the mitochondrial protein chains. Non-conservation of interior regions may reflect the differences between the two enzyme forms in subunit interactions, explaining the lack of heterotetrameric molecules. The presence of some internal repeat structures is also noted as well as apparently general features of differences between cytosolic and mitochondrial enzymes.

摘要

报道了人肝线粒体醛脱氢酶亚基的500个氨基酸残基序列。这是首次确定任何物种中该酶类型的结构,其基于胰蛋白酶、溴化氰、葡萄球菌谷氨酸特异性蛋白酶和羟胺处理后的肽段。该链未被封闭(与乙酰化胞质酶形式相反),但在前七个位置显示出N端加工的异质性。否则,未获得亚基微异质性的证据。该结构与相应胞质酶的结构显示出68%的位置一致性,通过比较可以对几个片段进行功能解释。一个有片段被认为参与辅酶结合的区域是整个结构中最保守的长片段(第194 - 274位)。在胞质酶中与双硫仑反应相关鉴定出的半胱氨酸-302,在线粒体酶中也存在。一种新的活性位点模型似乎是可能的,且涉及一个疏水裂缝。N端片段几乎完全缺乏保守性可能反映了N端区域在信号传导线粒体蛋白链转运中的作用。内部区域缺乏保守性可能反映了两种酶形式在亚基相互作用方面的差异,解释了异源四聚体分子的缺乏。还注意到一些内部重复结构的存在以及胞质和线粒体酶之间差异的明显一般特征。

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