State Key Laboratory of Medicinal Chemical Biology, Frontiers Science Center for Cell Responses, College of Life Sciences, Nankai University, 300353, Tianjin, China.
Laboratory of Structural Biology, Tsinghua University, 100084, Beijing, China.
Nat Commun. 2020 Aug 25;11(1):4245. doi: 10.1038/s41467-020-18011-9.
Diheme-containing succinate:menaquinone oxidoreductases (Sdh) are widespread in Gram-positive bacteria but little is known about the catalytic mechanisms they employ for succinate oxidation by menaquinone. Here, we present the 2.8 Å cryo-electron microscopy structure of a Mycobacterium smegmatis Sdh, which forms a trimer. We identified the membrane-anchored SdhF as a subunit of the complex. The 3 kDa SdhF forms a single transmembrane helix and this helix plays a role in blocking the canonically proximal quinone-binding site. We also identified two distal quinone-binding sites with bound quinones. One distal binding site is formed by neighboring subunits of the complex. Our structure further reveals the electron/proton transfer pathway for succinate oxidation by menaquinone. Moreover, this study provides further structural insights into the physiological significance of a trimeric respiratory complex II. The structure of the menaquinone binding site could provide a framework for the development of Sdh-selective anti-mycobacterial drugs.
泛醌氧化还原酶(Sdh)广泛存在于革兰氏阳性菌中,但对于它们利用泛醌氧化琥珀酸盐的催化机制知之甚少。在这里,我们展示了分枝杆菌 Sdh 的 2.8Å 冷冻电镜结构,它形成三聚体。我们鉴定了膜锚定的 SdhF 作为复合物的一个亚基。3kDa 的 SdhF 形成一个单一的跨膜螺旋,该螺旋在阻止典型的近侧醌结合位点中发挥作用。我们还鉴定了两个带有结合醌的远端醌结合位点。一个远端结合位点是由复合物的相邻亚基形成的。我们的结构进一步揭示了泛醌氧化琥珀酸盐的电子/质子转移途径。此外,这项研究为三聚体呼吸复合物 II 的生理意义提供了进一步的结构见解。醌结合位点的结构可以为 Sdh 选择性抗分枝杆菌药物的开发提供框架。