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本文引用的文献

1
Cytochrome c(2) is not essential for photosynthetic growth of Rhodopseudomonas capsulata.细胞色素 c(2)并非荚膜红细菌光合生长所必需。
Proc Natl Acad Sci U S A. 1986 Apr;83(7):2012-6. doi: 10.1073/pnas.83.7.2012.
2
Species-specific tRNA recognition in relation to tRNA synthetase contact residues.与氨酰-tRNA合成酶接触残基相关的物种特异性tRNA识别
J Mol Biol. 1997 May 30;269(1):1-9. doi: 10.1006/jmbi.1997.1025.
3
Heme binding to a conserved Cys-Pro-Val motif is crucial for the catalytic function of mitochondrial heme lyases.血红素与保守的半胱氨酸-脯氨酸-缬氨酸基序的结合对于线粒体血红素裂解酶的催化功能至关重要。
J Biol Chem. 1996 Dec 20;271(51):32605-11. doi: 10.1074/jbc.271.51.32605.
4
Use of heme reporters for studies of cytochrome biosynthesis and heme transport.使用血红素报告基因研究细胞色素生物合成和血红素运输。
J Bacteriol. 1996 Nov;178(21):6338-47. doi: 10.1128/jb.178.21.6338-6347.1996.
5
Escherichia coli K-12 genes essential for the synthesis of c-type cytochromes and a third nitrate reductase located in the periplasm.大肠杆菌K-12中合成c型细胞色素和位于周质的第三种硝酸还原酶所必需的基因。
Mol Microbiol. 1996 Feb;19(3):467-81. doi: 10.1046/j.1365-2958.1996.383914.x.
6
Rhodobacter capsulatus CycH: a bipartite gene product with pleiotropic effects on the biogenesis of structurally different c-type cytochromes.荚膜红细菌CycH:一种对结构不同的c型细胞色素生物合成具有多效性作用的双功能基因产物。
J Bacteriol. 1996 Sep;178(17):5279-90. doi: 10.1128/jb.178.17.5279-5290.1996.
7
A novel membrane-associated c-type cytochrome, cyt cy, can mediate the photosynthetic growth of Rhodobacter capsulatus and Rhodobacter sphaeroides.一种新型的膜相关c型细胞色素,细胞色素cy,可以介导荚膜红细菌和球形红细菌的光合生长。
EMBO J. 1993 Apr;12(4):1283-92. doi: 10.1002/j.1460-2075.1993.tb05773.x.
8
Cytochromes c biogenesis in a photosynthetic bacterium requires a periplasmic thioredoxin-like protein.光合细菌中细胞色素c的生物合成需要一种周质硫氧还蛋白样蛋白。
Proc Natl Acad Sci U S A. 1993 Mar 15;90(6):2179-83. doi: 10.1073/pnas.90.6.2179.
9
Sequence, genetic, and lacZ fusion analyses of a nifR3-ntrB-ntrC operon in Rhodobacter capsulatus.荚膜红细菌中nifR3-ntrB-ntrC操纵子的序列、遗传及lacZ融合分析
Mol Microbiol. 1993 May;8(5):903-14. doi: 10.1111/j.1365-2958.1993.tb01636.x.
10
Formation of several bacterial c-type cytochromes requires a novel membrane-anchored protein that faces the periplasm.几种细菌c型细胞色素的形成需要一种面向周质的新型膜锚定蛋白。
Mol Microbiol. 1993 Aug;9(4):729-40. doi: 10.1111/j.1365-2958.1993.tb01733.x.

特定细胞色素c生物合成蛋白对氧气响应的差异水平:荚膜红细菌中ccl操纵子的分析

Differential levels of specific cytochrome c biogenesis proteins in response to oxygen: analysis of the ccl operon in Rhodobacter capsulatus.

作者信息

Gabbert K K, Goldman B S, Kranz R G

机构信息

Department of Biology, Washington University, St. Louis, Missouri 63130, USA.

出版信息

J Bacteriol. 1997 Sep;179(17):5422-8. doi: 10.1128/jb.179.17.5422-5428.1997.

DOI:10.1128/jb.179.17.5422-5428.1997
PMID:9286996
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC179412/
Abstract

The photosynthetic bacterium Rhodobacter capsulatus synthesizes c-type cytochromes under a variety of growth conditions. For example, under aerobic growth, c-type cytochromes are synthesized as part of an electron transport pathway, using oxygen as the terminal electron acceptor. Anaerobically in the light, R. capsulatus requires cytochrome bc1 and other c-type cytochromes for the photosynthetic electron transport pathway. It is shown here that the ccl1 and ccl2 genes of R. capsulatus are required for the synthesis of all c-type cytochromes, including the cytochrome c' protein of unknown function but of structural similarity to cytochrome b562. Polar and nonpolar mutations constructed in each gene demonstrated that the ccl12 genes form an operon. Expression of the ccl12 genes was examined by using lacZ and phoA fusions as translational reporters. Primer extension analysis was used to determine transcriptional control and the start site of the ccl12 promoter. Finally, antiserum to the Ccl2 protein was used to quantitate levels of Ccl2 under six different growth conditions. The Ccl2 protein is present at 20-fold-higher levels under conditions where oxygen is present. In contrast, other cytochromes c biogenesis proteins, HelA and HelX, previously shown to be part of an helABCDX operon, are at relatively similar levels under these six growth conditions. This discovery is discussed in terms of the physiology and evolution of cytochromes c biogenesis, with particular attention to oxidative environments.

摘要

光合细菌荚膜红细菌(Rhodobacter capsulatus)在多种生长条件下合成c型细胞色素。例如,在有氧生长条件下,c型细胞色素作为电子传递途径的一部分被合成,利用氧气作为末端电子受体。在光照厌氧条件下,荚膜红细菌的光合电子传递途径需要细胞色素bc1和其他c型细胞色素。本文表明,荚膜红细菌的ccl1和ccl2基因是合成所有c型细胞色素所必需的,包括功能未知但结构与细胞色素b562相似的细胞色素c'蛋白。在每个基因中构建的极性和非极性突变表明,ccl12基因形成一个操纵子。通过使用lacZ和phoA融合作为翻译报告基因来检测ccl12基因的表达。引物延伸分析用于确定ccl12启动子的转录调控和起始位点。最后,使用针对Ccl2蛋白的抗血清来定量六种不同生长条件下Ccl2的水平。在有氧条件下,Ccl2蛋白的水平高出20倍。相比之下,其他细胞色素c生物合成蛋白HelA和HelX,先前已证明它们是helABCDX操纵子的一部分,在这六种生长条件下水平相对相似。本文从细胞色素c生物合成的生理学和进化角度讨论了这一发现,特别关注氧化环境。