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反硝化副球菌甲基胺脱氢酶在1.75埃分辨率下的精细晶体结构。

Refined crystal structure of methylamine dehydrogenase from Paracoccus denitrificans at 1.75 A resolution.

作者信息

Chen L, Doi M, Durley R C, Chistoserdov A Y, Lidstrom M E, Davidson V L, Mathews F S

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University Medical School, St. Louis, MO 63110, USA.

出版信息

J Mol Biol. 1998 Feb 13;276(1):131-49. doi: 10.1006/jmbi.1997.1511.

Abstract

The three-dimensional structure of the quinoprotein methylamine dehydrogenase from Paracoccus denitrificans has been refined at 1.75 A resolution utilizing the DNA-based protein sequence. The final model incorporates 8034 atoms per molecule, including 552 molecules of solvent, and gives an R-factor of 0.163. The molecule is an H2L2 hetero-tetramer containing a non-crystallographic 2-fold axis of symmetry. The 373-residue H subunit is folded into seven repeats of a four-stranded antiparallel beta-sheet motif, arranged in a propeller-like pattern about a pseudo-7-fold rotational axis of symmetry. Each L subunit contains 131 residues folded in a tight structure composed of five beta-strands in two sheets and crosslinked by six disulfide bonds. In addition there is an intrasubunit covalent linkage between two tryptophan side-chains that form the unique redox center, tryptophan tryptophylquinone (TTQ). The active site contains the O-6 carbonyl of TTQ, the side-chains of Asp32L Asp76L, Tyr119L and Thr122L, and two solvent molecules. A potential "gate" (Phe55H) separates the closed active-site cavity from a channel containing a group of highly ordered water molecules to bulk solvent. Phe55H and Tyr119L, and a number of neighboring oxygen atoms, may also provide a binding site for monovalent cations that are known to affect the reactivity and spectral properties of TTQ as well as the oxidative half reaction. The overall reaction has been dissected into a number of discrete steps that may require participation by several individual amino acid residues in the active site acting as general acids and bases.

摘要

利用基于DNA的蛋白质序列,已将反硝化副球菌的喹蛋白甲胺脱氢酶的三维结构精修至1.75埃分辨率。最终模型每个分子包含8034个原子,包括552个溶剂分子,R因子为0.163。该分子是一个H2L2异源四聚体,含有一个非晶体学的2次对称轴。373个残基的H亚基折叠成由四条反平行β-折叠基序组成的七个重复单元,围绕一个假7次旋转对称轴呈螺旋桨状排列。每个L亚基包含131个残基,折叠成一个紧密结构,由两片中的五条β-链组成,并通过六个二硫键交联。此外,在形成独特氧化还原中心的两个色氨酸侧链之间存在亚基内共价连接,即色氨酸-色氨酸醌(TTQ)。活性位点包含TTQ的O-6羰基、Asp32L、Asp76L、Tyr119L和Thr122L的侧链以及两个溶剂分子。一个潜在的“门”(Phe55H)将封闭的活性位点腔与一个含有一组高度有序水分子通向大量溶剂的通道隔开。Phe55H和Tyr119L以及一些相邻的氧原子,也可能为单价阳离子提供一个结合位点,已知这些阳离子会影响TTQ的反应性和光谱性质以及氧化半反应。整个反应已被分解为许多离散步骤,这些步骤可能需要活性位点中的几个单个氨基酸残基作为广义酸碱参与。

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