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一种来自厌氧氨氧化菌的 60 个血红素还原酶复合物显示出扩展的电子转移途径。

A 60-heme reductase complex from an anammox bacterium shows an extended electron transfer pathway.

机构信息

Department of Biomolecular Mechanisms, Max Planck Institute for Medical Research, Jahnstrasse 29, 69120 Heidelberg, Germany.

Department of Microbiology, Radboud University, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.

出版信息

Acta Crystallogr D Struct Biol. 2019 Mar 1;75(Pt 3):333-341. doi: 10.1107/S2059798318017473. Epub 2019 Feb 28.

Abstract

The hydroxylamine oxidoreductase/hydrazine dehydrogenase (HAO/HDH) protein family constitutes an important group of octaheme cytochromes c (OCCs). The majority of these proteins form homotrimers, with their subunits being covalently attached to each other via a rare cross-link between the catalytic heme moiety and a conserved tyrosine residue in an adjacent subunit. This covalent cross-link has been proposed to modulate the active-site heme towards oxidative catalysis by distorting the heme plane. In this study, the crystal structure of a stable complex of an HAO homologue (KsHAOr) with its diheme cytochrome c redox partner (KsDH) from the anammox bacterium Kuenenia stuttgartiensis was determined. KsHAOr lacks the tyrosine cross-link and is therefore tuned to reductive catalysis. The molecular model of the KsHAOr-KsDH complex at 2.6 Å resolution shows a heterododecameric (αβ) assembly, which was also shown to be the oligomeric state in solution by analytical ultracentrifugation and multi-angle static light scattering. The 60-heme-containing protein complex reveals a unique extended electron transfer pathway and provides deeper insights into catalysis and electron transfer in reductive OCCs.

摘要

羟胺氧化还原酶/肼脱氢酶(HAO/HDH)蛋白家族构成了八血红素细胞色素 c(OCC)的重要组成部分。这些蛋白质大多数形成三聚体,其亚基通过催化血红素部分和相邻亚基中保守的酪氨酸残基之间罕见的交联共价连接在一起。这种共价交联被认为通过扭曲血红素平面来调节活性位点血红素向氧化催化。在这项研究中,确定了来自厌氧氨氧化菌 Kuenenia stuttgartiensis 的 HAO 同源物(KsHAOr)与其二血红素细胞色素 c 氧化还原伴侣(KsDH)的稳定复合物的晶体结构。KsHAOr 缺乏酪氨酸交联,因此适合还原催化。在 2.6Å 分辨率下,KsHAOr-KsDH 复合物的分子模型显示出异源十二聚体(αβ)组装,通过分析超速离心和多角度静态光散射也表明其在溶液中的寡聚状态。这个包含 60 个血红素的蛋白质复合物揭示了一个独特的扩展电子转移途径,并提供了对还原 OCC 中催化和电子转移的更深入了解。

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