呼吸链
电子传输链
线粒体
电化学梯度
化学渗透
ATP合酶
生物物理学
线粒体呼吸链
呼吸
细胞色素c
电子转移
F-ATP酶
线粒体内膜
细胞呼吸
质子
内膜
化学
生物化学
细胞色素
膜
生物
光化学
物理
酶
解剖
类囊体
基因
叶绿体
量子力学
作者
Sun,Qiangjun Zhou,Xiaoyun Pang,Yingzhi Xu,Zihe Rao
标识
DOI:10.1016/j.sbi.2013.06.013
摘要
Cellular respiration is the process that releases energy from food and supplies energy for life processes. The mitochondrial respiratory chain is the final and most important step for cellular respiration and is located on the inner membrane of mitochondrion and comprises four large trans-membrane protein complexes (respiratory chain Complexes I, II, III and IV) as well as ubiquinone between Complexes I/II and III and cytochrome c between Complexes III and IV. The function of mitochondrial respiratory chain is biological oxidation by transferring electrons from NADH and succinate to oxygen and then generating proton gradient across the inner membrane. Such proton gradient is utilized by ATP synthase (ATPase, also called as Complex V) to produce energy molecules ATP. Structural studies of mitochondrial respiratory membrane protein complexes are important to understand the mechanism of electron transfer and the redox-coupled proton translocation across the inner membrane. Here, according to the time line, we reviewed the great achievements on structural studies of mitochondrial respiratory complexes in the past twenty years as well as the recent research progresses on the structures of mitochondrial respiratory supra-complexes.
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