BIP, Centre National de la Recherche Scientifique, UPR9036, IFR88, 31 Chemin Joseph Aiguier, Marseille, France.
Photosynth Res. 2010 Jun;104(2-3):177-87. doi: 10.1007/s11120-009-9524-1. Epub 2010 Jan 21.
Data on structure and function of the Rieske/cytb complex from Heliobacteria are scarce. They indicate that the complex is related to the b (6) f complex in agreement with the phylogenetic position of the organism. It is composed of a diheme cytochrome c, and a Rieske iron-sulfur protein, together with transmembrane cytochrome b (6) and subunit IV. Additional small subunits may be part of the complex. The cofactor content comprises heme c (i), first discovered in the Q(i) binding pocket of b (6) f complexes. The redox midpoint potentials are more negative than in b (6) f complex in agreement with the lower redox midpoint potentials (by about 150 mV) of its reaction partners, menaquinone, and cytochrome c (553). The enzyme is implicated in cyclic electron transfer around the RCI. Functional studies are favored by the absence of antennae and the simple photosynthetic reaction chain but are hampered by the high oxygen sensitivity of the organism, its chlorophyll, and lipids.
有关产甲烷菌 Rieske/cytb 复合物的结构和功能的数据很少。它们表明该复合物与 b(6)f 复合物有关,这与生物体的系统发育位置一致。它由二血红素细胞色素 c 和 Rieske 铁硫蛋白组成,与跨膜细胞色素 b(6)和亚基 IV 一起。其他小亚基可能是复合物的一部分。辅酶含量包括首次在 b(6)f 复合物的 Q(i)结合口袋中发现的细胞色素 c(i)。氧化还原中点电位比 b(6)f 复合物更负,这与它的反应伙伴,menaquinone 和细胞色素 c(553)的还原中点电位(约 150 mV)较低一致。该酶参与了 RCI 周围的循环电子转移。由于没有天线和简单的光合作用反应链,功能研究是有利的,但生物体、叶绿素和脂质对氧气的高度敏感阻碍了这一研究。