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双原子气体与细胞色素c'结合的构象控制

Conformational control of the binding of diatomic gases to cytochrome c'.

作者信息

Manole Andreea, Kekilli Demet, Svistunenko Dimitri A, Wilson Michael T, Dobbin Paul S, Hough Michael A

机构信息

School of Biological Sciences, University of Essex, Wivenhoe Park, Colchester, Essex, CO4 3SQ, UK.

出版信息

J Biol Inorg Chem. 2015 Jun;20(4):675-86. doi: 10.1007/s00775-015-1253-7. Epub 2015 Mar 20.

Abstract

The cytochromes c' (CYTcp) are found in denitrifying, methanotrophic and photosynthetic bacteria. These proteins are able to form stable adducts with CO and NO but not with O2. The binding of NO to CYTcp currently provides the best structural model for the NO activation mechanism of soluble guanylate cyclase. Ligand binding in CYTcps has been shown to be highly dependent on residues in both the proximal and distal heme pockets. Group 1 CYTcps typically have a phenylalanine residue positioned close to the distal face of heme, while for group 2, this residue is typically leucine. We have structurally, spectroscopically and kinetically characterised the CYTcp from Shewanella frigidimarina (SFCP), a protein that has a distal phenylalanine residue and a lysine in the proximal pocket in place of the more common arginine. Each monomer of the SFCP dimer folds as a 4-alpha-helical bundle in a similar manner to CYTcps previously characterised. SFCP exhibits biphasic binding kinetics for both NO and CO as a result of the high level of steric hindrance from the aromatic side chain of residue Phe 16. The binding of distal ligands is thus controlled by the conformation of the phenylalanine ring. Only a proximal 5-coordinate NO adduct, confirmed by structural data, is observed with no detectable hexacoordinate distal NO adduct.

摘要

细胞色素c'(CYTcp)存在于反硝化细菌、甲烷氧化细菌和光合细菌中。这些蛋白质能够与CO和NO形成稳定的加合物,但不能与O2形成加合物。目前,NO与CYTcp的结合为可溶性鸟苷酸环化酶的NO激活机制提供了最佳的结构模型。已证明CYTcp中的配体结合高度依赖于近端和远端血红素口袋中的残基。第1组CYTcp通常在血红素远端表面附近有一个苯丙氨酸残基,而对于第2组,该残基通常是亮氨酸。我们从结构、光谱和动力学方面对来自嗜冷希瓦氏菌的CYTcp(SFCP)进行了表征,该蛋白在近端口袋中有一个远端苯丙氨酸残基和一个赖氨酸,取代了更常见的精氨酸。SFCP二聚体的每个单体折叠成4-α-螺旋束,其方式与先前表征的CYTcp相似。由于残基Phe 16的芳香侧链存在高度空间位阻,SFCP对NO和CO均表现出双相结合动力学。因此,远端配体的结合受苯丙氨酸环构象的控制。通过结构数据证实,仅观察到近端五配位NO加合物,未检测到六配位远端NO加合物。

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