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球形红细菌2.4.1的rdx基因座的遗传和表型分析

Genetic and phenotypic analyses of the rdx locus of Rhodobacter sphaeroides 2.4.1.

作者信息

Roh J H, Kaplan S

机构信息

Department of Microbiology and Molecular Genetics, The University of Texas, Health Science Center at Houston, 77030, USA.

出版信息

J Bacteriol. 2000 Jun;182(12):3475-81. doi: 10.1128/JB.182.12.3475-3481.2000.

Abstract

Previously, we reported that rdxB, encoding a likely membrane-bound two [4Fe-4S]-containing center, is involved in the aerobic regulation of photosystem gene expression in Rhodobacter sphaeroides 2.4.1. To further investigate the role of rdxB as well as other genes of the rdxBHIS operon on photosystem gene expression, we constructed a series of nonpolar, in-frame deletion mutations in each of the rdx genes. Using both puc and puf operon lacZ fusions to monitor photosystem gene expression, under aerobic conditions, in each of the mutant strains revealed significant increased photosynthesis gene expression. In the case of mutations in either rdxH, rdxI, or rdxS, the aerobic induction of photosystem gene expression is believed to be indirect by virtue of a posttranscriptional effect on cbb(3) cytochrome oxidase structure and integrity. For RdxB, we suggest that this redox protein has a more direct effect on photosystem gene expression by virtue of its interaction with the cbb(3) oxidase. An associated phenotype, involving the enhanced conversion of the carotenoid spheroidene to spheroidenone, is also observed in the RdxB, -H, -I, and -S mutant strains. This phenotype is also suggested to be the result of the role of the rdxBHIS locus in cbb(3) oxidase activity and/or structure. RdxI is suggested to be a new class of metal transporter of the CPx-type ATPases.

摘要

此前,我们报道了rdxB基因,它编码一种可能与膜结合的含有两个[4Fe-4S]中心的蛋白,参与球形红细菌2.4.1中光系统基因表达的有氧调节。为了进一步研究rdxB以及rdxBHIS操纵子的其他基因在光系统基因表达中的作用,我们在每个rdx基因中构建了一系列非极性、框内缺失突变体。利用puc和puf操纵子的lacZ融合来监测光系统基因表达,在有氧条件下,每个突变菌株中的光合成基因表达均显著增加。在rdxH、rdxI或rdxS发生突变的情况下,光系统基因表达的有氧诱导被认为是通过对cbb(3)细胞色素氧化酶结构和完整性的转录后效应而间接发生的。对于RdxB,我们认为这种氧化还原蛋白通过与cbb(3)氧化酶相互作用,对光系统基因表达有更直接的影响。在RdxB、-H、-I和-S突变菌株中还观察到一种相关表型,即类胡萝卜素球形烯向球形酮的转化增强。这种表型也被认为是rdxBHIS基因座在cbb(3)氧化酶活性和/或结构中起作用的结果。RdxI被认为是CPx型ATP酶的一类新型金属转运蛋白。

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