首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >The membrane-bound cytochrome cy of Rhodobacter capsulatus can serve as an electron donor to the photosynthetic reaction center of Rhodobacter sphaeroides
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The membrane-bound cytochrome cy of Rhodobacter capsulatus can serve as an electron donor to the photosynthetic reaction center of Rhodobacter sphaeroides

机译:荚膜红球菌的膜结合细胞色素cy可以作为球形红球菌光合作用中心的电子供体

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摘要

Rhodobacter capsulatus has two different pathways for reduction of the photo-oxidized reaction center, one using water-soluble cytochrome c2, the other via membrane-associated cytochrome cy. Rhodobacter sphaeroides differs in that it lacks a cytochrome cy homologue capable of functioning in photosynthetic electron transfer; cytochrome c2 is thus the sole electron carrier, and is required for photosynthetic (Ps+) growth. Genetic evidence indicates that cytochrome cy of R. capsulatus can complement a Ps? cytochrome-c2-deficient mutant of R. sphaeroides (Jenney, F.E. and Daldal, F. (1993) EMBO J. 12, 1283–1292). Here, we show that is transfers electrons from the cytochrome bc1 complex to the reaction center in R. sphaeroides, albeit at a lower rate than that catalyzed by the endogenous cytochrome c2. When cytochrome cy is expressed in R. sphaeroides in the presence of cytochrome c2, there is an increase in the amount of photo-oxidizible c-type cytochrome. In the absence of cytochrome c2, electron transfer via cytochrome cy shows significantly different kinetics for reaction center reduction and cytochrome c oxidation. These findings further establish that cytochrome cy, the electron carrier permitting soluble cytochrome c2-independent photosynthetic growth in R. capsulatus, can function in a similar capacity in R. sphaeroides.
机译:荚膜红细菌具有两种减少光氧化反应中心的途径,一种途径是使用水溶性细胞色素c2,另一种途径是通过膜相关的细胞色素cy。球形红细菌的不同之处在于,它缺乏能够在光合作用电子转移中起作用的细胞色素cy同系物。因此,细胞色素c2是唯一的电子载体,并且是光合作用(Ps +)生长所必需的。遗传证据表明,荚膜红球菌的细胞色素cy可以补充Ps? s。seroeroides的细胞色素C2缺陷型突变体(Jenney,F.E.和Daldal,F.(1993)EMBO J. 12,1283–1292)。在这里,我们显示的是将电子从细胞色素bc1复合体转移到球形红球菌中的反应中心,尽管其速率低于内源性细胞色素c2催化的速率。当在细胞色素c2存在下在球形红斑病菌中表达细胞色素cy时,光可氧化的c型细胞色素的数量增加。在不存在细胞色素c2的情况下,通过细胞色素cy进行的电子转移对反应中心还原和细胞色素c氧化显示出明显不同的动力学。这些发现进一步证实,细胞色素cy,允许在荚膜红球菌中进行不依赖于细胞色素c2的光合作用生长的电子载体,可以在球形芽孢杆菌中发挥相似的功能。

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