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嗜热栖热放线菌中的细胞色素c550:氧化还原突变体的研究。

Cytochrome c550 in the cyanobacterium Thermosynechococcus elongatus: study of redox mutants.

作者信息

Kirilovsky Diana, Roncel Mercedes, Boussac Alain, Wilson Adjélé, Zurita Jorge L, Ducruet Jean-Marc, Bottin Hervé, Sugiura Miwa, Ortega José M, Rutherford A William

机构信息

Service de Bioénergétique, Departement Biologie Joliot-Curie, URA Consejo Superior de Investigaciones Cientificas 2096, CEA Saclay, 91191 Gif sur Yvette, France.

出版信息

J Biol Chem. 2004 Dec 17;279(51):52869-80. doi: 10.1074/jbc.M408206200. Epub 2004 Sep 22.

Abstract

Cytochrome c(550) is one of the extrinsic Photosystem II subunits in cyanobacteria and red algae. To study the possible role of the heme of the cytochrome c(550) we constructed two mutants of Thermosynechococcus elongatus in which the residue His-92, the sixth ligand of the heme, was replaced by a Met or a Cys in order to modify the redox properties of the heme. The H92M and H92C mutations changed the midpoint redox potential of the heme in the isolated cytochrome by +125 mV and -30 mV, respectively, compared with the wild type. The binding-induced increase of the redox potential observed in the wild type and the H92C mutant was absent in the H92M mutant. Both modified cytochromes were more easily detachable from the Photosystem II compared with the wild type. The Photosystem II activity in cells was not modified by the mutations suggesting that the redox potential of the cytochrome c(550) is not important for Photosystem II activity under normal growth conditions. A mutant lacking the cytochrome c(550) was also constructed. It showed a lowered affinity for Cl(-) and Ca(2+) as reported earlier for the cytochrome c(550)-less Synechocystis 6803 mutant, but it showed a shorter lived S(2)Q(B)(-) state, rather than a stabilized S(2) state and rapid deactivation of the enzyme in the dark, which were characteristic of the Synechocystis mutant. It is suggested that the latter effects may be caused by loss (or weaker binding) of the other extrinsic proteins rather than a direct effect of the absence of the cytochrome c(550).

摘要

细胞色素c(550)是蓝细菌和红藻中光系统II的外在亚基之一。为了研究细胞色素c(550)血红素的可能作用,我们构建了两个嗜热栖热菌突变体,其中血红素的第六个配体组氨酸-92被甲硫氨酸或半胱氨酸取代,以改变血红素的氧化还原特性。与野生型相比,H92M和H92C突变分别使分离的细胞色素中血红素的中点氧化还原电位改变了+125 mV和-30 mV。在野生型和H92C突变体中观察到的结合诱导的氧化还原电位增加在H92M突变体中不存在。与野生型相比,两种修饰的细胞色素都更容易从光系统II上分离。细胞中的光系统II活性没有因这些突变而改变,这表明在正常生长条件下,细胞色素c(550)的氧化还原电位对光系统II活性并不重要。还构建了一个缺乏细胞色素c(550)的突变体。如先前报道的无细胞色素c(550)的集胞藻6803突变体一样,它对Cl(-)和Ca(2+)的亲和力降低,但它显示出S(2)Q(B)(-)状态的寿命较短,而不是稳定的S(2)状态和在黑暗中酶的快速失活,这些是集胞藻突变体的特征。有人认为,后一种效应可能是由其他外在蛋白质的缺失(或较弱结合)引起的,而不是细胞色素c(550)缺失的直接影响。

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