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可溶性鸟苷酸环化酶血红素结构域的共振拉曼光谱表征

Resonance raman characterization of the heme domain of soluble guanylate cyclase.

作者信息

Schelvis J P, Zhao Y, Marletta M A, Babcock G T

机构信息

Department of Chemistry, LASER Laboratory, Michigan State University, East Lansing 48824-1322, USA.

出版信息

Biochemistry. 1998 Nov 17;37(46):16289-97. doi: 10.1021/bi981547h.

Abstract

We report the resonance Raman characterization of the heme domain of rat lung soluble guanylate cyclase (sGC) expressed in Escherichia coli. Like heterodimeric sGC isolated from bovine lung, the sGC heme domain [beta1(1-385)] and its heme ligand mutant H105G(Im) contain a stoichiometric amount of heme, which is five-coordinate, high-spin ferrous in both beta1(1-385) and chemically reduced H105G(Im). In the presence of NO, both beta1(1-385) and H105G(Im) form a five-coordinate nitrosyl heme complex with a nu(Fe-NO) value of 525 cm-1 and a nu(NO) value of 1676 cm-1. For the first time, the Fe-N-O bending mode near 400 cm-1 has been identified in a five-coordinate nitrosyl heme complex. Both beta1(1-385) and H105G(Im) form a six-coordinate, low-spin complex with CO. We find evidence for two binding conformations of the Fe-CO unit. The conformation that is more prevalent in beta1(1-385) has a nu(Fe-CO) value of 478 cm-1 and a delta(Fe-C-O) value of 567 cm-1, whereas the dominant conformation in H105G(Im) is characterized by a nu(Fe-CO) value of 495 cm-1 and a delta(Fe-C-O) value of 572 cm-1. We propose that in the dominant conformation of H105G(Im)-CO the Fe-CO unit is hydrogen bonded to a distal residue, while this is not the case in beta1(1-385). Reexamination of sGC isolated from bovine lung tissue indicates that it also has two binding conformations for CO; the more populated form is not hydrogen-bonded. We propose that the absence of hydrogen-bond formation between a distal residue and exogenous ligands is physiologically relevant in lowering the oxygen affinity of heterodimeric sGC and, therefore, stabilizing the ferrous, active form of the enzyme under aerobic conditions.

摘要

我们报道了在大肠杆菌中表达的大鼠肺可溶性鸟苷酸环化酶(sGC)血红素结构域的共振拉曼光谱表征。与从牛肺中分离得到的异二聚体sGC一样,sGC血红素结构域[β1(1 - 385)]及其血红素配体突变体H105G(Im)含有化学计量的血红素,在β1(1 - 385)和化学还原的H105G(Im)中均为五配位、高自旋亚铁血红素。在NO存在的情况下,β1(1 - 385)和H105G(Im)均形成五配位亚硝酰血红素配合物,其ν(Fe - NO)值为525 cm-1,ν(NO)值为1676 cm-1。首次在五配位亚硝酰血红素配合物中鉴定出400 cm-1附近的Fe - N - O弯曲模式。β1(1 - 385)和H105G(Im)均与CO形成六配位、低自旋配合物。我们发现了Fe - CO单元的两种结合构象的证据。在β1(1 - 385)中更普遍的构象其ν(Fe - CO)值为478 cm-1,δ(Fe - C - O)值为567 cm-1,而在H105G(Im)中的主要构象其特征在于ν(Fe - CO)值为495 cm-1,δ(Fe - C - O)值为572 cm-1。我们提出,在H105G(Im)-CO的主要构象中,Fe - CO单元与一个远端残基形成氢键,而在β1(1 - 385)中并非如此。对从牛肺组织中分离得到的sGC的重新研究表明,它对CO也有两种结合构象;含量较多的形式没有形成氢键。我们提出,远端残基与外源性配体之间不存在氢键形成在生理上与降低异二聚体sGC的氧亲和力相关,因此在有氧条件下稳定酶的亚铁活性形式。

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