Institute of Membrane and Systems Biology, University of Leeds, Leeds LS2 9JT, United Kingdom.
J Biol Chem. 2012 Apr 20;287(17):14215-25. doi: 10.1074/jbc.M112.348813. Epub 2012 Mar 5.
Little is known about enzymatic quinone-quinol interconversions in the lipid membrane when compared with our knowledge of substrate transformations by globular enzymes. Here, the smallest example of a quinol dehydrogenase in nature, CymA, has been studied. CymA is a monotopic membrane tetraheme c-type cytochrome belonging to the NapC/NirT family and central to anaerobic respiration in Shewanella sp. Using protein-film electrochemistry, it is shown that vesicle-bound menaquinone-7 is not only a substrate for this enzyme but is also required as a cofactor when converting other quinones. Here, we propose that the high concentration of quinones in the membrane negates the evolutionary pressure to create a high affinity active site. However, the instability and reactivity of reaction intermediate, semiquinone, might require a cofactor that functions to minimize damaging side reactions.
与我们对球状酶底物转化的了解相比,人们对脂膜中酶醌-氢醌相互转化知之甚少。在这里,研究了自然界中最小的醌脱氢酶范例 CymA。CymA 是一种单跨膜四血红素 c 型细胞色素,属于 NapC/NirT 家族,是 Shewanella sp. 无氧呼吸的核心。通过蛋白膜电化学方法,表明囊泡结合的menaquinone-7 不仅是该酶的底物,而且在转化其他醌时也需要作为辅因子。在这里,我们提出膜中高浓度的醌否定了创造高亲和力活性位点的进化压力。然而,反应中间体半醌的不稳定性和反应性可能需要一种辅因子来最小化有害的副反应。