Kapazoglou A, Mould R M, Gray J C
Department of Plant Sciences, Cambridge Centre for Molecular Recognition, University of Cambridge, UK.
Eur J Biochem. 2000 Jan;267(2):352-60. doi: 10.1046/j.1432-1327.2000.01006.x.
The assembly of the Rieske iron-sulphur protein into the cytochrome bf complex was examined following import of 35S-labeled precursor protein by isolated pea chloroplasts. Rieske protein assembled into the cytochrome bf complex was resolved from unassembled Rieske protein and from other membrane complexes by nondenaturing gel electrophoresis of dodecyl maltoside-solubilized thylakoid membranes. Four mutant forms of the Rieske protein were able to assemble into the cytochrome bf complex in isolated chloroplasts. These were a triple substitution mutant, C107S/H109R/C112S, replacing conserved residues involved in the ligation of the [2Fe-2S] centre; the mutant Delta45-52 which removed a glycine-rich region predicted to form a flexible hinge between the hydrophobic membrane-associated region and the hydrophilic lumenal domain; and mutants Delta168-173 and Delta177-179 which removed two C-terminal regions, which are highly conserved in chloroplast and cyanobacterial Rieske proteins. This indicates that the [2Fe-2S] cluster, the glycine-rich region and the C-terminal region are not essential for stable assembly of the Rieske protein into the cytochrome bf complex in isolated chloroplasts.
在分离的豌豆叶绿体导入35S标记的前体蛋白后,研究了 Rieske 铁硫蛋白装配到 Cytbf 复合体中的情况。通过对十二烷基麦芽糖苷增溶的类囊体膜进行非变性凝胶电泳,将装配到 Cytbf 复合体中的 Rieske 蛋白与未装配的 Rieske 蛋白以及其他膜复合体分离开来。Rieske 蛋白的四种突变形式能够在分离的叶绿体中装配到 Cytbf 复合体中。这些突变体包括一个三重取代突变体C107S/H109R/C112S,它取代了参与[2Fe-2S]中心连接的保守残基;缺失预测在疏水膜相关区域和亲水腔结构域之间形成柔性铰链的富含甘氨酸区域的突变体Delta45-52;以及缺失叶绿体和蓝藻 Rieske 蛋白中高度保守的两个C端区域的突变体Delta168-173和Delta177-179。这表明,在分离的叶绿体中,[2Fe-2S]簇、富含甘氨酸的区域和C端区域对于 Rieske 蛋白稳定装配到 Cytbf 复合体中并非必不可少。