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通过使用脉冲电子顺磁共振进行氘交换鉴定出的参与结合bc1复合物中Qi位点半醌的氢键。

Hydrogen bonds involved in binding the Qi-site semiquinone in the bc1 complex, identified through deuterium exchange using pulsed EPR.

作者信息

Dikanov Sergei A, Samoilova Rimma I, Kolling Derrick R J, Holland J Todd, Crofts Antony R

机构信息

Department of Biochemistry, University of Illinois at Urbana--Champaign, Urbana, Illinois 61801, USA.

出版信息

J Biol Chem. 2004 Apr 16;279(16):15814-23. doi: 10.1074/jbc.M313417200. Epub 2004 Jan 21.

Abstract

Exchangeable protons in the immediate neighborhood of the semiquinone (SQ) at the Qi-site of the bc1 complex (ubihydroquinone:cytochrome c oxidoreductase (EC 1.10.2.2)) from Rhodobacter sphaeroides have been characterized using electron spin echo envelope modulation (ESEEM) and hyperfine sublevel correlation spectroscopy (HYSCORE) and visualized by substitution of H2O by 2H2O. Three exchangeable protons interact with the electron spin of the SQ. They possess different isotropic and anisotropic hyperfine couplings that allow a clear distinction between them. The strength of interactions indicates that the protons are involved in hydrogen bonds with SQ. The hyperfine couplings differ from values typical for in-plane hydrogen bonds previously observed in model experiments. It is suggested that the two stronger couplings involve formation of hydrogen bonds with carbonyl oxygens, which have a significant out-of-plane character due to the combined influence of bulky substituents and the protein environment. These two hydrogen bonds are most probably to side chains suggested from crystallographic structures (His-217 and Asp-252 in R. sphaeroides). Assignment of the third hydrogen bond is more ambiguous but may involve either a bond between Asn-221 and a methoxy O-atom or a bond to water. The structural and catalytic roles of the exchangeable protons are discussed in the context of three high resolution crystallographic structures for mitochondrial bc1 complexes. Potential H-bonds, including those to water molecules, form a network connecting the quinone (ubiquinone) occupant and its ligands to the propionates of heme bH and the external aqueous phase. They provide pathways for exchange of protons within the site and with the exteriors, needed to accommodate the different hydrogen bonding requirements of different quinone species during catalysis.

摘要

利用电子自旋回波包络调制(ESEEM)和超精细能级相关光谱(HYSCORE)对来自球形红细菌的bc1复合物(泛醌:细胞色素c氧化还原酶(EC 1.10.2.2))Qi位点半醌(SQ)紧邻区域的可交换质子进行了表征,并通过用2H2O替代H2O使其可视化。三个可交换质子与SQ的电子自旋相互作用。它们具有不同的各向同性和各向异性超精细耦合,这使得它们之间能够清晰区分。相互作用的强度表明这些质子参与了与SQ的氢键形成。超精细耦合不同于先前在模型实验中观察到的平面内氢键的典型值。有人认为,两个较强的耦合涉及与羰基氧形成氢键,由于庞大取代基和蛋白质环境的综合影响,羰基氧具有显著的平面外特征。这两个氢键很可能是与晶体结构推测的侧链形成的(球形红细菌中的His-217和Asp-252)。第三个氢键的归属更不明确,但可能涉及Asn-221与甲氧基O原子之间的键或与水的键。在三个线粒体bc1复合物的高分辨率晶体结构背景下讨论了可交换质子的结构和催化作用。潜在的氢键,包括与水分子的氢键,形成了一个网络,将醌(泛醌)占据者及其配体与血红素bH的丙酸酯和外部水相连接起来。它们为位点内质子与外部质子的交换提供了途径,这是催化过程中适应不同醌类物种不同氢键需求所必需的。

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