Martin Angela C, Nair Usha, Armitage Judith P, Maddock Janine R
Microbiology Unit, Department of Biochemistry, University of Oxford, Oxford OX1 3QU, United Kingdom.
J Bacteriol. 2003 Aug;185(16):4667-71. doi: 10.1128/JB.185.16.4667-4671.2003.
Rhodobacter sphaeroides is a motile bacterium that has multiple chemotaxis genes organized predominantly in three major operons (cheOp(1), cheOp(2), and cheOp(3)). The chemoreceptor proteins are clustered at two distinct locations, the cell poles and in one or more cytoplasmic clusters. One intriguing possibility is that the physically distinct chemoreceptor clusters are each composed of a defined subset of specific chemotaxis proteins, including the chemoreceptors themselves plus specific CheW and CheA proteins. Here we report the subcellular localization of one such protein, CheA(2), under aerobic and photoheterotrophic growth conditions. CheA(2) is predominantly clustered and localized at the cell poles under both growth conditions. Furthermore, its localization is dependent upon one or more genes in cheOp(2) but not those of cheOp(1) or cheOp(3). In E. coli, the polar localization of CheA depends upon CheW. The R. sphaeroides cheOp(2) contains two cheW genes. Interestingly, CheW(2) is required under both aerobic and photoheterotrophic conditions, whereas CheW(3) is not required under aerobic conditions but appears to play a modest role under photoheterotrophic conditions. This suggests that R. sphaeroides contains at least two distinct chemotaxis complexes, possibly composed of proteins dedicated for each subcellular location. Furthermore, the composition of these spatially distinct complexes may change under different growth conditions.
球形红细菌是一种可运动的细菌,它有多个趋化性基因,主要组织在三个主要操纵子(cheOp(1)、cheOp(2)和cheOp(3))中。化学感受器蛋白聚集在两个不同的位置,即细胞极和一个或多个细胞质簇中。一种有趣的可能性是,物理上不同的化学感受器簇各自由特定趋化性蛋白的特定子集组成,包括化学感受器本身以及特定的CheW和CheA蛋白。在这里,我们报告了一种这样的蛋白CheA(2)在有氧和光异养生长条件下的亚细胞定位。在这两种生长条件下,CheA(2)主要聚集并定位在细胞极。此外,它的定位取决于cheOp(2)中的一个或多个基因,而不取决于cheOp(1)或cheOp(3)中的基因。在大肠杆菌中,CheA的极定位取决于CheW。球形红细菌的cheOp(2)包含两个cheW基因。有趣的是,在有氧和光异养条件下都需要CheW(2),而在有氧条件下不需要CheW(3),但在光异养条件下似乎起适度作用。这表明球形红细菌至少包含两种不同的趋化性复合物,可能由专门针对每个亚细胞位置的蛋白质组成。此外,这些在空间上不同的复合物的组成可能在不同的生长条件下发生变化。