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球形红杆菌细胞色素c'中近端NO结合位点的精氨酸-127在决定五配位NO-血红素的电子结构和功能方面的作用。

The role of arginine-127 at the proximal NO-binding site in determining the electronic structure and function of 5-coordinate NO-heme in cytochrome c' of Rhodobacter sphaeroides.

作者信息

Lee Byunghoon, Usov Oleg M, Grigoryants Vladimir M, Myers William K, Shapleigh James P, Scholes Charles P

机构信息

Department of Chemistry, Center for Biochemistry and Biophysics, University at Albany, State University of New York, Albany, New York 12222, USA.

出版信息

Biochemistry. 2009 Sep 29;48(38):8985-93. doi: 10.1021/bi900833f.

Abstract

Cytochrome c' is a heme protein from a denitrifying variant of Rhodobacter sphaeroides which may serve to store and transport metabolic NO while protecting against NO toxicity. Its heme site bears resemblance through its 5-coordinate NO-binding capability to the regulatory site in soluble guanylate cyclase. A conserved arginine (Arg-127) abuts the 5-coordinate NO-heme binding site, and the alanine mutant R127A provided insight into the role of the Arg-127 in establishing the electronic structure of the heme-NO complex and in modifying the heme-centered redox potential and NO-binding affinity. By comparison to R127A, the wild-type Arg-127 was determined to increase the heme redox potential, diminish the NO-binding affinity, perturb and diminish the 14NO hyperfine coupling determined by ENDOR (electron nuclear double resonance), and increase the maximal electronic g-value. The larger isotropic NO hyperfine and the smaller maximal g-value of the R127A mutant together predicted that the Fe-N-O bond angle in the mutant is larger than that of the Arg-127-containing wild-type protein. Deuterium ENDOR provided evidence for exchangeable H/D consistent with hydrogen bonding of Arg-127, but not Ala-127, to the O of the NO. Proton ENDOR features previously assigned to Phe-14 on the distal side of the heme were unperturbed by the proximal side R127A mutation, implying the localized nature of that mutational perturbation at the proximal, NO-binding side of the heme. From this work two functions of positively charged Arg-127 emerged: the first was to maintain the KD of the cytochrome c' in the 1 microM range, and the second was to provide a redox potential that enhances the stability of the ferrous heme.

摘要

细胞色素c'是来自球形红杆菌反硝化变体的一种血红素蛋白,它可能用于储存和运输代谢产生的一氧化氮(NO),同时保护细胞免受NO毒性的影响。其血红素位点通过其五配位的NO结合能力与可溶性鸟苷酸环化酶中的调节位点相似。一个保守的精氨酸(Arg-127)邻接五配位的NO-血红素结合位点,丙氨酸突变体R127A有助于深入了解Arg-127在建立血红素-NO复合物的电子结构以及改变以血红素为中心的氧化还原电位和NO结合亲和力方面的作用。与R127A相比,确定野生型Arg-127会增加血红素氧化还原电位,降低NO结合亲和力,干扰并降低通过电子核双共振(ENDOR)测定的14NO超精细耦合,并增加最大电子g值。R127A突变体较大的各向同性NO超精细和较小的最大g值共同表明,突变体中的Fe-N-O键角大于含Arg-127的野生型蛋白中的键角。氘代ENDOR提供了可交换H/D的证据,这与Arg-127而非Ala-127与NO的O形成氢键一致。先前归因于血红素远端侧Phe-14的质子ENDOR特征不受近端侧R127A突变的干扰,这意味着该突变扰动在血红素近端NO结合侧的局部性质。从这项工作中可以看出带正电的Arg-127有两个功能:第一个是将细胞色素c'的解离常数(KD)维持在1微摩尔范围内,第二个是提供一个氧化还原电位以增强亚铁血红素的稳定性。

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