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来自大肠杆菌的质子转运型NADH-醌氧化还原酶亚基NuoG中铁硫簇N7(N1c)的表征。

Characterization of the iron-sulfur cluster N7 (N1c) in the subunit NuoG of the proton-translocating NADH-quinone oxidoreductase from Escherichia coli.

作者信息

Nakamaru-Ogiso Eiko, Yano Takahiro, Yagi Takao, Ohnishi Tomoko

机构信息

Division of Biochemistry, Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

J Biol Chem. 2005 Jan 7;280(1):301-7. doi: 10.1074/jbc.M410377200. Epub 2004 Nov 1.

Abstract

The proton-pumping NADH-quinone oxidoreductase from Escherichia coli houses nine iron-sulfur clusters, eight of which are found in its mitochondrial counterpart, complex I. The extra putative iron-sulfur cluster binding site with a CXXCXXXCX(27)C motif in the NuoG subunit has been assigned to ligate a [2Fe-2S] (N1c). However, we have shown previously that the Thermus thermophilus N1c fragment containing this motif ligates a [4Fe-4S] (Nakamaru-Ogiso, E., Yano, T., Ohnishi, T., and Yagi, T. (2002) J. Biol. Chem. 277, 1680-1688). In the current study, we individually inactivated four sets of the iron-sulfur binding motifs in the E. coli NuoG subunit by replacing all four ligands with Ala. Each mutant subunit, designated Delta N1b, Delta N1c, Delta N4, and Delta N5, was expressed as maltose-binding protein fusion proteins. After in vitro reconstitution, all mutant subunits were characterized by EPR. Although EPR signals from cluster N1b were not detected in any preparations, we detected two [4Fe-4S] EPR signals with g values of g(x,y,z) = 1.89, 1.94, and 2.06, and g(x,y,z) = 1.91, 1.94, and 2.05 at 6-20 K in wild type, Delta N1b, and Delta N5. The former signal was assigned to cluster N4, and the latter signal was assigned to cluster N1c because of their disappearance in Delta N4 and Delta N1c. Confirming that a [4Fe-4S] cluster ligates to the N1c motif, we propose to replace its misleading [2Fe-2S] name, N1c, with "cluster N7." In addition, because these mutations differently affected the assembly of peripheral subunits by in trans complementation analysis with the nuoG knock-out strain, the implicated structural importance of the iron-sulfur binding domains is discussed.

摘要

来自大肠杆菌的质子泵NADH-醌氧化还原酶含有九个铁硫簇,其中八个存在于其线粒体对应物复合物I中。NuoG亚基中具有CXXCXXXCX(27)C基序的额外假定铁硫簇结合位点已被指定连接一个[2Fe-2S](N1c)。然而,我们之前已经表明,包含该基序的嗜热栖热菌N1c片段连接一个[4Fe-4S](中丸-荻生,E.,矢野,T.,大西,T.,和八木,T.(2002年)《生物化学杂志》277,1680 - 1688)。在当前研究中,我们通过将所有四个配体替换为丙氨酸,分别使大肠杆菌NuoG亚基中的四组铁硫结合基序失活。每个突变亚基,命名为Delta N1b、Delta N1c、Delta N4和Delta N5,被表达为麦芽糖结合蛋白融合蛋白。体外重构后,所有突变亚基通过电子顺磁共振(EPR)进行表征。尽管在任何制剂中均未检测到来自簇N1b的EPR信号,但在野生型、Delta N1b和Delta N5中,我们在6 - 20 K检测到两个g值分别为g(x,y,z) = 1.89、1.94和2.06以及g(x,y,z) = 1.91、1.94和2.05的[4Fe-4S] EPR信号。前一个信号被指定为簇N4,后一个信号被指定为簇N1c,因为它们在Delta N4和Delta N1c中消失。证实一个[4Fe-4S]簇连接到N1c基序后,我们提议将其具有误导性的[2Fe-2S]名称N1c替换为“簇N7”。此外,由于这些突变通过与nuoG基因敲除菌株的反式互补分析对周边亚基的组装产生不同影响,因此讨论了铁硫结合域所涉及的结构重要性。

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