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在球形红细菌呼吸生长过程中,可移动的细胞色素c2和膜锚定的细胞色素cy都是cbb3型和aa3型细胞色素c氧化酶的有效电子供体。

Mobile cytochrome c2 and membrane-anchored cytochrome cy are both efficient electron donors to the cbb3- and aa3-type cytochrome c oxidases during respiratory growth of Rhodobacter sphaeroides.

作者信息

Daldal F, Mandaci S, Winterstein C, Myllykallio H, Duyck K, Zannoni D

机构信息

Department of Biology, Plant Science Institute, University of Pennsylvania, Philadelphia, Pennsylvania 19104, USA.

出版信息

J Bacteriol. 2001 Mar;183(6):2013-24. doi: 10.1128/JB.183.6.2013-2024.2001.

Abstract

We have recently established that the facultative phototrophic bacterium Rhodobacter sphaeroides, like the closely related Rhodobacter capsulatus species, contains both the previously characterized mobile electron carrier cytochrome c2 (cyt c2) and the more recently discovered membrane-anchored cyt cy. However, R. sphaeroides cyt cy, unlike that of R. capsulatus, is unable to function as an efficient electron carrier between the photochemical reaction center and the cyt bc1 complex during photosynthetic growth. Nonetheless, R. sphaeroides cyt cy can act at least in R. capsulatus as an electron carrier between the cyt bc1 complex and the cbb3-type cyt c oxidase (cbb3-Cox) to support respiratory growth. Since R. sphaeroides harbors both a cbb3-Cox and an aa3-type cyt c oxidase (aa3-Cox), we examined whether R. sphaeroides cyt cy can act as an electron carrier to either or both of these respiratory terminal oxidases. R. sphaeroides mutants which lacked either cyt c2 or cyt cy and either the aa3-Cox or the cbb3-Cox were obtained. These double mutants contained linear respiratory electron transport pathways between the cyt bc1 complex and the cyt c oxidases. They were characterized with respect to growth phenotypes, contents of a-, b-, and c-type cytochromes, cyt c oxidase activities, and kinetics of electron transfer mediated by cyt c2 or cyt cy. The findings demonstrated that both cyt c2 and cyt cy are able to carry electrons efficiently from the cyt bc1 complex to either the cbb3-Cox or the aa3-Cox. Thus, no dedicated electron carrier for either of the cyt c oxidases is present in R. sphaeroides. However, under semiaerobic growth conditions, a larger portion of the electron flow out of the cyt bc1 complex appears to be mediated via the cyt c2-to-cbb3-Cox and cyt cy-to-cbb3-Cox subbranches. The presence of multiple electron carriers and cyt c oxidases with different properties that can operate concurrently reveals that the respiratory electron transport pathways of R. sphaeroides are more complex than those of R. capsulatus.

摘要

我们最近证实,兼性光合细菌球形红杆菌(Rhodobacter sphaeroides)与密切相关的荚膜红杆菌(Rhodobacter capsulatus)一样,既含有先前已表征的可移动电子载体细胞色素c2(细胞色素c2),也含有最近发现的膜锚定细胞色素cy。然而,球形红杆菌的细胞色素cy与荚膜红杆菌的不同,在光合生长过程中,它不能作为光化学反应中心与细胞色素bc1复合体之间的有效电子载体。尽管如此,球形红杆菌的细胞色素cy至少在荚膜红杆菌中可作为细胞色素bc1复合体与cbb3型细胞色素c氧化酶(cbb3-Cox)之间的电子载体,以支持呼吸生长。由于球形红杆菌同时含有cbb3-Cox和aa3型细胞色素c氧化酶(aa3-Cox),我们研究了球形红杆菌的细胞色素cy是否可作为这些呼吸末端氧化酶之一或两者的电子载体。我们获得了缺乏细胞色素c2或细胞色素cy以及aa3-Cox或cbb3-Cox的球形红杆菌突变体。这些双突变体在细胞色素bc1复合体与细胞色素c氧化酶之间含有线性呼吸电子传递途径。我们对它们的生长表型、a型、b型和c型细胞色素的含量、细胞色素c氧化酶活性以及由细胞色素c2或细胞色素cy介导的电子传递动力学进行了表征。研究结果表明,细胞色素c2和细胞色素cy都能够有效地将电子从细胞色素bc1复合体传递到cbb3-Cox或aa3-Cox。因此,球形红杆菌中不存在专门针对任何一种细胞色素c氧化酶的电子载体。然而,在半好氧生长条件下,流出细胞色素bc1复合体的大部分电子流似乎是通过细胞色素c2到cbb3-Cox和细胞色素cy到cbb3-Cox的分支介导的。多种具有不同特性且可同时起作用的电子载体和细胞色素c氧化酶的存在表明,球形红杆菌的呼吸电子传递途径比荚膜红杆菌的更为复杂。

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RsGDB, the Rhodobacter sphaeroides Genome Database.RsGDB,即球形红杆菌基因组数据库。
Nucleic Acids Res. 1999 Jan 1;27(1):61-2. doi: 10.1093/nar/27.1.61.

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