Davidson E, Prince R C, Haith C E, Daldal F
Department of Biology, University of Pennsylvania, Philadelphia 19104.
J Bacteriol. 1989 Nov;171(11):6059-68. doi: 10.1128/jb.171.11.6059-6068.1989.
Plasmids encoding the structural genes for the Rhodobacter capsulatus and Rhodobacter sphaeroides cytochrome (cyt) bc1 complexes were introduced into strains of R. capsulatus lacking the cyt bc1 complex, with and without cyt c2. The R. capsulatus merodiploids contained higher than wild-type levels of cyt bc1 complex, as evidenced by immunological and spectroscopic analyses. On the other hand, the R. sphaeroides-R. capsulatus hybrid merodiploids produced only barely detectable amounts of R. sphaeroides cyt bc1 complex in R. capsulatus. Nonetheless, when they contained cyt c2, they were capable of photosynthetic growth, as judged by the sensitivity of this growth to specific inhibitors of the photochemical reaction center and the cyt bc1 complex, such as atrazine, myxothiazol, and stigmatellin. Interestingly, in the absence of cyt c2, although the R. sphaeroides cyt bc1 complex was able to support the photosynthetic growth of a cyt bc1-less mutant of R. capsulatus in rich medium, it was unable to do so when C4 dicarboxylic acids, such as malate and succinate, were used as the sole carbon source. Even this conditional ability of R. sphaeroides cyt bc1 complex to replace that of R. capsulatus for photosynthetic growth suggests that in the latter species the cyt c2-independent rereduction of the reaction center is not due to a structural property unique to the R. capsulatus cyt bc1 complex. Similarly, the inability of R. sphaeroides to exhibit a similar pathway is not due to some inherent property of its cyt bc1 complex.
将编码荚膜红细菌和球形红细菌细胞色素(cyt)bc1复合物结构基因的质粒导入缺乏cyt bc1复合物的荚膜红细菌菌株中,这些菌株有的含有cyt c2,有的不含cyt c2。通过免疫和光谱分析证明,荚膜红细菌部分二倍体中cyt bc1复合物的水平高于野生型。另一方面,球形红细菌 - 荚膜红细菌杂种部分二倍体在荚膜红细菌中仅产生少量可检测到的球形红细菌cyt bc1复合物。尽管如此,当它们含有cyt c2时,根据这种生长对光化学反应中心和cyt bc1复合物的特异性抑制剂(如莠去津、粘噻唑和柱晶白霉素)的敏感性判断,它们能够进行光合生长。有趣的是,在缺乏cyt c2的情况下,虽然球形红细菌cyt bc1复合物能够支持富含培养基中荚膜红细菌cyt bc1缺失突变体的光合生长,但当使用苹果酸和琥珀酸等C4二羧酸作为唯一碳源时,它却无法做到。球形红细菌cyt bc1复合物在光合生长方面这种替代荚膜红细菌cyt bc1复合物的条件性能力表明,在后者中,反应中心不依赖cyt c2的再还原并非由于荚膜红细菌cyt bc1复合物特有的结构特性。同样,球形红细菌无法表现出类似途径也不是由于其cyt bc1复合物的某些固有特性。