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配体诱导的细菌古老黄色酶同源物封端亚结构域中的构象变化以及保守序列指纹为底物结合提供了新见解。

Ligand-induced conformational changes in the capping subdomain of a bacterial old yellow enzyme homologue and conserved sequence fingerprints provide new insights into substrate binding.

作者信息

van den Hemel Debbie, Brigé Ann, Savvides Savvas N, Van Beeumen Jozef

机构信息

Department of Biochemistry, Physiology and Microbiology, Laboratory for Protein Biochemistry and Protein Engineering, K.L. Ledeganckstraat 35, Ghent University, 9000 Ghent, Belgium.

出版信息

J Biol Chem. 2006 Sep 22;281(38):28152-61. doi: 10.1074/jbc.M603946200. Epub 2006 Jul 20.

Abstract

We have recently reported that Shewanella oneidensis, a Gram-negative gamma-proteobacterium with a rich arsenal of redox proteins, possesses four old yellow enzyme (OYE) homologues. Here, we report a series of high resolution crystal structures for one of these OYEs, Shewanella yellow enzyme 1 (SYE1), in its oxidized form at 1.4A resolution, which binds a molecule of PEG 400 in the active site, and in its NADH-reduced and p-hydroxybenzaldehyde- and p-hydroxyacetophenone-bound forms at 1.7A resolution. Although the overall structure of SYE1 reveals a monomeric enzyme based on the alpha(8)beta(8) barrel scaffold observed for other OYEs, the active site exhibits a unique combination of features: a strongly butterfly-bent FMN cofactor both in the oxidized and NADH-reduced forms, a collapsed and narrow active site tunnel, and a novel combination of conserved residues involved in the binding of phenolic ligands. Furthermore, we identify a second p-hydroxybenzaldehyde-binding site in a hydrophobic cleft next to the entry of the active site tunnel in the capping subdomain, formed by a restructuring of Loop 3 to an "open" conformation. This constitutes the first evidence to date for the entire family of OYEs that Loop 3 may indeed play a dynamic role in ligand binding and thus provides insights into the elusive NADH complex and into substrate binding in general. Structure-based sequence alignments indicate that the novelties we observe in SYE1 are supported by conserved residues in a number of structurally uncharacterized OYEs from the beta- and gamma-proteobacteria, suggesting that SYE1 represents a new subfamily of bacterial OYEs.

摘要

我们最近报道,嗜水气单胞菌(Shewanella oneidensis)是一种革兰氏阴性γ-变形菌,拥有丰富的氧化还原蛋白库,它含有四种老黄色酶(OYE)同源物。在此,我们报道了其中一种OYE——嗜水气单胞菌黄色酶1(SYE1)的一系列高分辨率晶体结构,其氧化形式分辨率为1.4埃,活性位点结合了一个聚乙二醇400分子;其NADH还原形式以及结合对羟基苯甲醛和对羟基苯乙酮的形式分辨率为1.7埃。尽管SYE1的整体结构显示它是一种基于其他OYE所观察到的α(8)β(8)桶状支架的单体酶,但其活性位点展现出独特的特征组合:氧化形式和NADH还原形式中均有一个强烈呈蝶形弯曲的FMN辅因子、一个塌陷且狭窄的活性位点通道,以及参与酚类配体结合的保守残基的新组合。此外,我们在封端亚结构域中活性位点通道入口旁边的疏水裂缝中确定了第二个对羟基苯甲醛结合位点,它是由环3重构成“开放”构象形成的。这是迄今为止整个OYE家族中第一个表明环3可能确实在配体结合中发挥动态作用的证据,从而为难以捉摸的NADH复合物以及一般的底物结合提供了见解。基于结构的序列比对表明,我们在SYE1中观察到的新颖之处得到了来自β-和γ-变形菌的许多结构未表征的OYE中保守残基的支持,这表明SYE1代表了细菌OYE的一个新亚家族。

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