Rich Peter R
The Glynn Laboratory of Bioenergetics, Department of Biology, University College London, Gower Street, London WC1E 6BT, UK.
Biochim Biophys Acta. 2004 Jul 23;1658(1-2):165-71. doi: 10.1016/j.bbabio.2004.04.021.
The quinone chemistry that gives rise to the rather unusual strict bifurcation of electron transfer at the Q(o) site of the cytochrome bc complexes remains controversial. In this article, I review recent ideas and propose a "logic-gated" binding mechanism that combines classical quinone electrochemistry with specific hydrogen bonding requirements and results in a reversible reaction that minimizes unwanted side-reactions that could otherwise undermine the efficiency of the Q-cycle proton/electron coupling mechanism.
在细胞色素bc复合物的Q(o)位点产生相当不寻常的严格电子传递分叉的醌化学仍然存在争议。在本文中,我回顾了最近的观点,并提出了一种“逻辑门控”结合机制,该机制将经典的醌电化学与特定的氢键要求相结合,导致可逆反应,将否则可能破坏Q循环质子/电子耦合机制效率的不必要副反应降至最低。