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首页> 外文期刊>Journal of bacteriology >Rhodobacter capsulatus CycH: a bipartite gene product with pleiotropic effects on the biogenesis of structurally different c-type cytochromes.
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Rhodobacter capsulatus CycH: a bipartite gene product with pleiotropic effects on the biogenesis of structurally different c-type cytochromes.

机译:荚膜红球菌CycH:一种多方基因产物,对结构上不同的c型细胞色素的生物发生具有多效性。

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While searching for components of the soluble electron carrier (cytochrome c2)-independent photosynthetic (Ps) growth pathway in Rhodobacter capsulatus, a Ps- mutant (FJM13) was isolated from a Ps+ cytochrome c2-strain. This mutant could be complemented to Ps+ growth by cycA encoding the soluble cytochrome c2 but was unable to produce several c-type cytochromes. Only cytochrome c1 of the cytochrome bc1 complex was present in FJM13 cells grown on enriched medium, while cells grown on minimal medium contained at various levels all c-type cytochromes, including the membrane-bound electron carrier cytochrome cy. Complementation of FJM13 by a chromosomal library lacking cycA yielded a DNA fragment which also complemented a previously described Ps- mutant, MT113, known to lack all c-type cytochromes. Deletion and DNA sequence analyses revealed an open reading frame homologous to cycH, involved in cytochrome c biogenesis. The cycH gene product (CycH) is predicted to be a bipartite protein with membrane-associated amino-terminal (CycH1) and periplasmic carboxyl-terminal (CycH2) subdomains. Mutations eliminating CyCH drastically decrease the production or all known c-type cytochromes. However, mutations truncating only its CycH2 subdomain always produce cytochrome c1 and affect the presence of other cytochromes to different degrees in a growth medium-dependent manner. Thus, the subdomain CycH1 is sufficient for the proper maturation of cytochrome c1 which is the only known c-type cytochrome anchored to the cytoplasmic membrane by its carboxyl terminus, while CycH2 is required for efficient biogenesis of other c-type cytochromes. These findings demonstrate that the two subdomains of CycH play different roles in the biogenesis of topologically distinct c-type cytochromes and reconcile the apparently conflicting data previously obtained for other species.
机译:在荚膜红细菌中寻找不依赖可溶性电子载体(细胞色素c2)的光合作用(Ps)生长途径的成分时,从Ps +细胞色素c2菌株中分离了一个Ps突变体(FJM13)。该突变体可通过编码可溶性细胞色素c2的cycA补充Ps +的生长,但无法产生几种c型细胞色素。在富集培养基上生长的FJM13细胞中仅存在细胞色素bc1复合体的细胞色素c1,而在基本培养基上生长的细胞以各种水平包含所有c型细胞色素,包括与膜结合的电子载体细胞色素cy。 FJM13由缺乏cycA的染色体文库互补产生了一个DNA片段,该片段也与先前描述的Ps突变体MT113互补,后者已知缺乏所有c型细胞色素。缺失和DNA序列分析揭示了与cycH同源的开放阅读框,其参与细胞色素c的生物发生。 cycH基因产物(CycH)预计是一种双分子蛋白,具有膜相关的氨基末端(CycH1)和周质羧基末端(CycH2)亚结构域。消除CyCH的突变会极大地降低产量或所有已知的c型细胞色素。但是,仅截断其CycH2亚结构域的突变总是产生细胞色素c1,并以依赖于生长培养基的方式不同程度地影响其他细胞色素的存在。因此,亚结构域CycH1足以使细胞色素c1正确成熟,而细胞色素c1是唯一已知的通过其羧基末端锚定至细胞质膜的c型细胞色素,而CycH2是其他c型细胞色素有效生物发生所必需的。这些发现表明,CycH的两个亚结构域在拓扑学上独特的c型细胞色素的生物发生中扮演不同的角色,并且调和了先前从其他物种获得的明显矛盾的数据。

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