International Cooperative Laboratory of Traditional Chinese Medicine Modernization and Innovative Drug Development of Chinese Ministry of Education (MOE), College of Pharmacy, Jinan University, Guangzhou, 510632, China.
Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China, Hefei, 230026, China.
Nat Commun. 2022 Oct 28;13(1):6434. doi: 10.1038/s41467-022-34034-w.
Toxin EsaD secreted by some S. aureus strains through the type VII secretion system (T7SS) specifically kills those strains lacking the antitoxin EsaG. Here we report the structures of EsaG, the nuclease domain of EsaD and their complex, which together reveal an inhibition mechanism that relies on significant conformational change of the toxin. To inhibit EsaD, EsaG breaks the nuclease domain of EsaD protein into two independent fragments that, in turn, sandwich EsaG. The originally well-folded ββα-metal finger connecting the two fragments is stretched to become a disordered loop, leading to disruption of the catalytic site of EsaD and loss of nuclease activity. This mechanism is distinct from that of the other Type II toxin-antitoxin systems, which utilize an intrinsically disordered region on the antitoxins to cover the active site of the toxins. This study paves the way for developing therapeutic approaches targeting this antagonism.
一些金黄色葡萄球菌菌株通过 VII 型分泌系统(T7SS)分泌的毒素 EsaD 特异性杀死缺乏相应解毒蛋白 EsaG 的菌株。在此,我们报告了 EsaG、EsaD 的核酸酶结构域及其复合物的结构,该结构共同揭示了一种依赖于毒素显著构象变化的抑制机制。为了抑制 EsaD,EsaG 将 EsaD 蛋白的核酸酶结构域切割成两个独立的片段,反过来,这两个片段将 EsaG 夹在中间。原本折叠良好的连接两个片段的ββα-金属指将被拉伸成无序环,导致 EsaD 的催化位点被破坏,失去核酸酶活性。这种机制与其他 II 型毒素-抗毒素系统不同,后者利用抗毒素上的固有无序区域覆盖毒素的活性位点。这项研究为开发针对这种拮抗作用的治疗方法铺平了道路。