Rott M A, Witthuhn V C, Schilke B A, Soranno M, Ali A, Donohue T J
Department of Bacteriology, University of Wisconsin-Madison 53706.
J Bacteriol. 1993 Jan;175(2):358-66. doi: 10.1128/jb.175.2.358-366.1993.
In Rhodobacter sphaeroides, cytochrome c2 (cyt c2)-deficient mutants are photosynthetically incompetent (PS-). However, mutations which suppress the photosynthetic deficiency (spd mutations) of cyt c2 mutants increase the levels of a cyt c2 isoform, isocyt c2. To determine whether isocyt c2 was required for photosynthetic growth of Spd mutants, we used Tn5 mutagenesis to generate a PS- mutant (TP39) that lacks both cyt c2 and isocyt c2. DNA sequence analysis of wild-type DNA that restores isocyt c2 production and photosynthetic growth to TP39 indicates that it encodes the isocyt c2 structural gene, cycI. The Tn5 insertion in TP39 is approximately 1.5 kb upstream of cycI, and our results show that it is polar onto cycI. The cycI gene has been physically mapped to a region of chromosome I that is approximately 700 kb from the R. sphaeroides photosynthetic gene cluster. Construction of a defined cycI null mutant and complementation of several mutants with the cycI gene under the control of the cyt c2 promoter region indicate that an increase in the levels of isocyt c2 alone is necessary and sufficient for photosynthetic growth in the absence of cyt c2. The data are discussed in terms of the obligate role of isocyt c2 in cyt c2-independent photosynthesis of R. sphaeroides.
在球形红细菌中,细胞色素c2(cyt c2)缺陷型突变体在光合作用方面无能力(PS-)。然而,抑制cyt c2突变体光合作用缺陷的突变(spd突变)会增加一种cyt c2同工型即异细胞色素c2的水平。为了确定异细胞色素c2对于Spd突变体光合作用生长是否必需,我们利用Tn5诱变产生了一个既缺乏细胞色素c2又缺乏异细胞色素c2的PS-突变体(TP39)。恢复TP39异细胞色素c2产生和光合作用生长的野生型DNA的DNA序列分析表明,它编码异细胞色素c2结构基因cycI。TP39中的Tn5插入位于cycI上游约1.5 kb处,我们的结果表明它对cycI具有极性效应。cycI基因已被物理定位到染色体I的一个区域,该区域距离球形红细菌光合基因簇约700 kb。构建一个明确的cycI缺失突变体,并在细胞色素c2启动子区域控制下用cycI基因对几个突变体进行互补,结果表明在没有细胞色素c2的情况下,仅异细胞色素c2水平的增加对于光合作用生长是必要且充分的。本文根据异细胞色素c2在球形红细菌不依赖细胞色素c2的光合作用中的重要作用对这些数据进行了讨论。