Majumder Erica L W, King Jeremy D, Blankenship Robert E
Washington University in St. Louis, Departments of Biology and Chemistry, Campus Box 1137, One Brookings Dr, St. Louis, MO 63130, USA.
Biochim Biophys Acta. 2013 Nov-Dec;1827(11-12):1383-91. doi: 10.1016/j.bbabio.2013.01.008. Epub 2013 Jan 25.
Alternative Complex III (ACIII) is a multisubunit integral membrane protein electron transfer complex that is proposed to be an energy-conserving functional replacement for the bacterial cytochrome bc1 or b6f complexes. Clues to the structure and function of this novel complex come from its relation to other bacterial enzyme families. The ACIII complex has menaquinone: electron acceptor oxidoreductase activity and contains protein subunits with multiple Fe-S centers and c-type hemes. ACIII is found in a diverse group of bacteria, including both phototrophic and nonphototrophic taxa. In the phototrophic filamentous anoxygenic phototrophs, the electron acceptor is the small blue copper protein auracyanin instead of a soluble cytochrome. Recent work on ACIII and the copper protein auracyanin is reviewed with focus on the photosynthetic systems and potential electron transfer pathways and mechanisms. Taken together, the ACIII complexes constitute a unique system for photosynthetic electron transfer and energy conservation. This article is part of a Special Issue entitled: Respiratory Complex III and related bc complexes.
交替型细胞色素bc1复合物(Alternative Complex III,ACIII)是一种多亚基整合膜蛋白电子传递复合物,被认为是细菌细胞色素bc1或b6f复合物的一种节能功能替代物。有关这种新型复合物结构和功能的线索来自于它与其他细菌酶家族的关系。ACIII复合物具有甲萘醌:电子受体氧化还原酶活性,并且包含具有多个铁硫中心和c型血红素的蛋白质亚基。ACIII存在于多种细菌中,包括光合和非光合类群。在光合丝状无氧光合细菌中,电子受体是小的蓝色铜蛋白金藻蓝蛋白,而不是可溶性细胞色素。本文综述了关于ACIII和铜蛋白金藻蓝蛋白的最新研究工作,重点关注光合系统以及潜在的电子传递途径和机制。综上所述,ACIII复合物构成了一个用于光合电子传递和能量守恒的独特系统。本文是名为:呼吸复合物III及相关bc复合物的特刊的一部分。