Aklujkar Muktak, Beatty J Thomas
Department of Microbiology and Immunology, University of British Columbia, V6T 1Z3, Vancouver, BC, Canada.
Photosynth Res. 2006 May;88(2):159-71. doi: 10.1007/s11120-006-9047-y. Epub 2006 Apr 19.
The photosynthetic apparatus of purple bacteria in the genus Rhodobacter includes a core complex consisting of the reaction centre (RC), light-harvesting complex 1 (LH1), and the PufX protein. PufX modulates LH1 structure and facilitates photosynthetic quinone/quinol exchange. We deleted RC/LH1 genes in pufX+ and pufX++ (merodiploid) strains of Rhodobacter capsulatus, which reduced PufX levels regardless of pufX gene copy number and location. Photosynthetic growth of RC-only strains and independent assembly kinetics of the RC and LH1 were unaffected by pufX merodiploidy, but the absorption spectra of strains expressing the RC plus either LH1 alpha or beta indicated that PufX may influence bacteriochlorophyll binding environments. Significant self-association of the PufX transmembrane segment was detected in a hybrid protein expression system, consistent with a role of PufX in core complex dimerization, as proposed for other Rhodobacter species. Our results indicate that in R. capsulatus PufX has the potential to be a central, homodimeric core complex component, and its cellular level is increased by interactions with the RC and LH1.
红杆菌属紫色细菌的光合装置包括一个核心复合体,该复合体由反应中心(RC)、光捕获复合体1(LH1)和PufX蛋白组成。PufX调节LH1的结构并促进光合醌/醌醇交换。我们在荚膜红杆菌的pufX+和pufX++(部分二倍体)菌株中删除了RC/LH1基因,这降低了PufX水平,而与pufX基因的拷贝数和位置无关。仅含RC菌株的光合生长以及RC和LH1的独立组装动力学不受pufX部分二倍体的影响,但表达RC加上LH1α或LH1β的菌株的吸收光谱表明,PufX可能会影响细菌叶绿素的结合环境。在一个杂交蛋白表达系统中检测到PufX跨膜片段有显著的自缔合现象,这与PufX在核心复合体二聚化中的作用一致,正如对其他红杆菌属物种所提出的那样。我们的结果表明,在荚膜红杆菌中,PufX有可能是核心复合体的一个中心同型二聚体成分,并且其细胞水平会因与RC和LH1的相互作用而增加。