Wang Sen, Gao Baocai, Chen Anke, Zhang Zhifei, Wang Sheng, Lv Liangdong, Zhao Guoping, Li Jixi
State Key Laboratory of Genetic Engineering, School of Life Sciences and Huashan Hospital, MOE Engineering Research Center of Gene Technology, Shanghai Engineering Research Center of Industrial Microorganisms, Fudan University, Shanghai, China.
Shanghai Zelixir Biotech Company Ltd., Shanghai, China.
Front Microbiol. 2023 Mar 1;14:1137279. doi: 10.3389/fmicb.2023.1137279. eCollection 2023.
The housecleaning enzyme of (Mtb), MazG, is a nucleoside triphosphate pyrophosphohydrolase (NTP-PPase) and can hydrolyze all canonical or non-canonical NTPs into NMPs and pyrophosphate. The MazG (Mtb-MazG) contributes to antibiotic resistance in response to oxidative or nitrosative stress under dormancy, making it a promising target for treating TB in latent infection patients. However, the structural basis of Mtb-MazG is not clear. Here we describe the crystal structure of Mtb-MazG (1-185) at 2.7 Å resolution, composed of two similar folded spherical domains in tandem. Unlike other all-α NTP pyrophosphatases, Mtb-MazG has an N-terminal extra region composed of three α-helices and five β-strands. The second domain is global, with five α-helices located in the N-terminal domain. Gel-filtration assay and SAXS analysis show that Mtb-MazG forms an enzyme-active dimer in solution. In addition, the metal ion Mg is bound with four negative-charged residues Glu119, Glu122, Glu138, and Asp141. Different truncations and site-directed mutagenesis revealed that the full-length dimeric form and the metal ion Mg are indispensable for the catalytic activity of Mtb-MazG. Thus, our work provides new insights into understanding the molecular basis of MtbMazG.
结核分枝杆菌(Mtb)的家务酶MazG是一种核苷三磷酸焦磷酸水解酶(NTP-PPase),可将所有标准或非标准NTP水解为NMP和焦磷酸。结核分枝杆菌MazG(Mtb-MazG)在休眠状态下响应氧化或亚硝化应激时有助于抗生素耐药性,使其成为治疗潜伏感染患者结核病的一个有前景的靶点。然而,Mtb-MazG的结构基础尚不清楚。在此,我们描述了分辨率为2.7Å的Mtb-MazG(1-185)的晶体结构,它由两个串联的相似折叠球形结构域组成。与其他全α NTP焦磷酸酶不同,Mtb-MazG有一个由三个α螺旋和五条β链组成的N端额外区域。第二个结构域是全局性的,有五个α螺旋位于N端结构域。凝胶过滤分析和小角X射线散射分析表明,Mtb-MazG在溶液中形成酶活性二聚体。此外,金属离子Mg与四个带负电荷的残基Glu119、Glu122、Glu138和Asp141结合。不同的截短和定点诱变表明,全长二聚体形式和金属离子Mg对Mtb-MazG的催化活性是不可或缺的。因此,我们的工作为理解MtbMazG的分子基础提供了新的见解。