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2
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FEBS Lett. 2002 Jul 3;522(1-3):83-7. doi: 10.1016/s0014-5793(02)02885-5.

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Substrate specificity of three cytochrome c haem lyase isoenzymes from Wolinella succinogenes: unconventional haem c binding motifs are not sufficient for haem c attachment by NrfI and CcsA1.沃尔氏脱硫弧菌三种细胞色素 c 血红素裂合酶同工酶的底物特异性:非常规血红素 c 结合基序不足以通过 NrfI 和 CcsA1 进行血红素 c 附着。
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本文引用的文献

1
C-type cytochrome formation: chemical and biological enigmas.C型细胞色素的形成:化学与生物学谜题
Acc Chem Res. 2004 Dec;37(12):999-1007. doi: 10.1021/ar030266l.
2
Purification and spectropotentiometric characterization of Escherichia coli NrfB, a decaheme homodimer that transfers electrons to the decaheme periplasmic nitrite reductase complex.大肠杆菌NrfB的纯化及光谱电位表征,NrfB是一种十聚血红素同型二聚体,可将电子传递给十聚血红素周质亚硝酸还原酶复合物。
J Biol Chem. 2004 Oct 1;279(40):41333-9. doi: 10.1074/jbc.M407604200. Epub 2004 Jul 27.
3
The tetraheme cytochrome CymA is required for anaerobic respiration with dimethyl sulfoxide and nitrite in Shewanella oneidensis.四血红素细胞色素CymA是希瓦氏菌利用二甲基亚砜和亚硝酸盐进行厌氧呼吸所必需的。
Biochemistry. 2003 Aug 12;42(31):9491-7. doi: 10.1021/bi034456f.
4
Electron transport to periplasmic nitrate reductase (NapA) of Wolinella succinogenes is independent of a NapC protein.电子传递至琥珀酸沃林氏菌的周质硝酸还原酶(NapA)与NapC蛋白无关。
Mol Microbiol. 2003 Jul;49(1):69-79. doi: 10.1046/j.1365-2958.2003.03544.x.
5
C-type cytochromes: diverse structures and biogenesis systems pose evolutionary problems.C型细胞色素:多样的结构和生物发生系统带来了进化问题。
Philos Trans R Soc Lond B Biol Sci. 2003 Jan 29;358(1429):255-66. doi: 10.1098/rstb.2002.1192.
6
Identification of two domains and distal histidine ligands to the four haems in the bacterial c-type cytochrome NapC; the prototype connector between quinol/quinone and periplasmic oxido-reductases.细菌c型细胞色素NapC中四个血红素的两个结构域和远端组氨酸配体的鉴定;喹啉/醌与周质氧化还原酶之间的原型连接体。
Biochem J. 2002 Dec 1;368(Pt 2):425-32. doi: 10.1042/BJ20020865.
7
Enzymology and bioenergetics of respiratory nitrite ammonification.呼吸性亚硝酸盐氨化作用的酶学与生物能量学
FEMS Microbiol Rev. 2002 Aug;26(3):285-309. doi: 10.1111/j.1574-6976.2002.tb00616.x.
8
Modification of heme c binding motifs in the small subunit (NrfH) of the Wolinella succinogenes cytochrome c nitrite reductase complex.沃氏琥珀酸弧菌细胞色素c亚硝酸还原酶复合物小亚基(NrfH)中血红素c结合基序的修饰
FEBS Lett. 2002 Jul 3;522(1-3):83-7. doi: 10.1016/s0014-5793(02)02885-5.
9
The tetraheme cytochrome c NrfH is required to anchor the cytochrome c nitrite reductase (NrfA) in the membrane of Wolinella succinogenes.四血红素细胞色素c NrfH是将细胞色素c亚硝酸还原酶(NrfA)锚定在琥珀酸沃林氏菌膜上所必需的。
Eur J Biochem. 2001 Nov;268(22):5776-82. doi: 10.1046/j.0014-2956.2001.02520.x.
10
Keilin's cytochromes: how bacteria use them, vary them and make them.凯林的细胞色素:细菌如何利用它们、改变它们并制造它们。
Biochem Soc Trans. 2001 Nov;29(Pt 6):629-40. doi: 10.1042/0300-5127:0290629.

定点修饰表明,相关的多血红素c型细胞色素NrfH家族和NapC家族在轴向血红素c铁配体方面存在差异。

Site-directed modifications indicate differences in axial haem c iron ligation between the related NrfH and NapC families of multihaem c-type cytochromes.

作者信息

Gross Roland, Eichler Robert, Simon Jörg

机构信息

Institut für Mikrobiologie, Johann Wolfgang Goethe-Universität, Marie-Curie-Str. 9, D-60439 Frankfurt am Main, Germany.

出版信息

Biochem J. 2005 Sep 15;390(Pt 3):689-93. doi: 10.1042/BJ20050448.

DOI:10.1042/BJ20050448
PMID:15907193
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1199662/
Abstract

During the last decade, a number of related bacterial membrane-bound multihaem c-type cytochromes, collectively referred to as the NapC/NirT family, were identified. These proteins are generally thought to catalyse electron transport between the quinone/quinol pool and periplasmic oxidoreductases. The best-characterized members, the tetrahaem c-type cytochromes NrfH and NapC, mediate electron transport to NrfA and NapA respectively. Amino acid sequence alignments suggest that the nature and position of distal haem c iron ligands differs in NrfH and NapC proteins. Site-directed modification of potential haem c iron-ligating histidine, lysine and methionine residues in Wolinella succinogenes NrfH was performed to determine the implication in electron transport from formate to nitrite. Two histidine, one lysine and one methionine residues were found to be essential, whereas the replacement of three other conserved histidine residues, one methionine and two lysines did not prevent growth by nitrite respiration. The results contrast those previously obtained for Paracoccus pantotrophus NapC, in which four essential histidine residues have been identified that are highly likely to serve as distal haem c iron ligands. The combined experimental evidence suggests different haem ligation patterns within NapC and NrfH proteins, which might reflect their different functions in the bacterial electron transfer.

摘要

在过去十年间,人们鉴定出了一些相关的细菌膜结合多血红素c型细胞色素,统称为NapC/NirT家族。这些蛋白质通常被认为催化醌/醌醇池与周质氧化还原酶之间的电子传递。特征最明确的成员,即四血红素c型细胞色素NrfH和NapC,分别介导电子向NrfA和NapA的传递。氨基酸序列比对表明,NrfH和NapC蛋白中远端血红素c铁配体的性质和位置有所不同。对产琥珀酸沃林氏菌NrfH中潜在的血红素c铁连接组氨酸、赖氨酸和甲硫氨酸残基进行定点修饰,以确定其在从甲酸到亚硝酸盐的电子传递中的作用。发现两个组氨酸、一个赖氨酸和一个甲硫氨酸残基是必不可少的,而另外三个保守组氨酸残基、一个甲硫氨酸和两个赖氨酸的替换并不妨碍通过亚硝酸盐呼吸进行生长。这些结果与之前对嗜糖副球菌NapC的研究结果形成对比,在NapC中已鉴定出四个必不可少的组氨酸残基,它们极有可能作为远端血红素c铁配体。综合实验证据表明,NapC和NrfH蛋白内存在不同的血红素连接模式,这可能反映了它们在细菌电子传递中的不同功能。