Qian Y, Tabita F R
Ohio State Biochemistry, Ohio State University, Columbus 43210-1292, USA.
J Bacteriol. 1996 Jan;178(1):12-8. doi: 10.1128/jb.178.1.12-18.1996.
Complementation of a mutant of Rhodobacter sphaeroides defective in photosynthetic CO2 reduction led to the identification of a gene which encodes a protein that is related to a class of sensor kinases involved in bacterial signal transduction. The nucleotide sequence and deduced amino acid sequence led to the finding that the gene which complemented the mutant is the regB (prrB) gene, previously isolated from both R. sphaeroides and Rhodobacter capsulatus and shown to regulate the anaerobic expression of structural genes required for the synthesis of the reaction center and light-harvesting systems of these organisms. The current investigation indicates that in addition to its role in the regulation of photosystem biosynthesis, regB (prrB) of R. sphaeroides is intimately involved in the positive regulation of the cbbI and cbbII Calvin cycle CO2 fixation operons. In addition to regulating the expression of structural genes encoding enzymes of the primary pathway for CO2 fixation in R. sphaeroides, regB was also found to be required for the expression of a gene(s) important for the putative alternative CO2 fixation pathway(s) of this organism. A mutation in regB also blocked expression of structural genes of the cbb regulon in a strain of R. sphaeroides capable of aerobic CO2-dependent growth in the dark. It is thus apparent that regB is part of a two-component system and encodes a sensor kinase involved in the global regulation of both anoxygenic light-dependent- and oxygenic light-independent CO2 fixation as well as anoxygenic photosystem biosynthesis.
对光合二氧化碳还原存在缺陷的球形红细菌突变体进行互补作用,从而鉴定出一个基因,该基因编码一种与参与细菌信号转导的一类传感激酶相关的蛋白质。核苷酸序列和推导的氨基酸序列表明,互补该突变体的基因是regB(prrB)基因,该基因先前已从球形红细菌和荚膜红细菌中分离出来,并显示可调节这些生物体反应中心和光捕获系统合成所需结构基因的厌氧表达。目前的研究表明,除了在光系统生物合成调节中的作用外,球形红细菌的regB(prrB)还密切参与cbbI和cbbII卡尔文循环二氧化碳固定操纵子的正调控。除了调节编码球形红细菌中二氧化碳固定主要途径酶的结构基因的表达外,还发现regB对于该生物体假定的替代二氧化碳固定途径中重要的一个或多个基因的表达是必需的。regB中的突变也阻断了在黑暗中能够进行有氧二氧化碳依赖生长的球形红细菌菌株中cbb操纵子结构基因的表达。因此,很明显regB是双组分系统的一部分,并且编码一种传感激酶,参与无氧光依赖和有氧光不依赖二氧化碳固定以及无氧光系统生物合成的全局调节。