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同源DarG抗毒素对DarT毒素中和作用的结构见解:DarG C末端结构域模拟单链DNA使DarT毒素保持抑制状态。

Structural insights into DarT toxin neutralization by cognate DarG antitoxin: ssDNA mimicry by DarG C-terminal domain keeps the DarT toxin inhibited.

作者信息

Deep Amar, Singh Latika, Kaur Japleen, Velusamy Maheshwaran, Bhardwaj Pushpanjali, Singh Ramandeep, Thakur Krishan Gopal

机构信息

Structural Biology Laboratory, Council of Scientific and Industrial Research-Institute of Microbial Technology (CSIR-IMTECH), Chandigarh 160036, India.

Infection and Immunology Group, Tuberculosis Research Laboratory, Translational Health Science and Technology Institute, NCR-Biotech Science Cluster, 3rd Milestone, Faridabad Gurugram Expressway, Faridabad-121001, India.

出版信息

Structure. 2023 Jul 6;31(7):780-789.e4. doi: 10.1016/j.str.2023.04.008. Epub 2023 May 10.

Abstract

In the DarTG toxin-antitoxin system, the DarT toxin ADP-ribosylates single-stranded DNA (ssDNA), which stalls DNA replication and plays a crucial role in controlling bacterial growth and bacteriophage infection. This toxic activity is reversed by the N-terminal macrodomain of the cognate antitoxin DarG. DarG also binds DarT, but the role of these interactions in DarT neutralization is unknown. Here, we report that the C-terminal domain of DarG (DarG toxin-binding domain [DarG]) interacts with DarT to form a 1:1 stoichiometric heterodimeric complex. We determined the 2.2 Å resolution crystal structure of the Mycobacterium tuberculosis DarT-DarG complex. The comparative structural analysis reveals that DarG interacts with DarT at the DarT/ssDNA interaction interface, thus sterically occluding substrate ssDNA binding and consequently inactivating toxin by direct protein-protein interactions. Our data support a unique two-layered DarT toxin neutralization mechanism of DarG, which is important in keeping the toxin molecules in check under normal growth conditions.

摘要

在DarTG毒素-抗毒素系统中,DarT毒素将单链DNA(ssDNA)进行ADP核糖基化修饰,这会使DNA复制停滞,并在控制细菌生长和噬菌体感染中发挥关键作用。同源抗毒素DarG的N端巨结构域可逆转这种毒性活性。DarG也会与DarT结合,但这些相互作用在DarT中和过程中的作用尚不清楚。在此,我们报道DarG的C端结构域(DarG毒素结合结构域[DarG])与DarT相互作用,形成1:1化学计量比的异源二聚体复合物。我们确定了结核分枝杆菌DarT-DarG复合物的2.2 Å分辨率晶体结构。比较结构分析表明,DarG在DarT/ssDNA相互作用界面处与DarT相互作用,从而在空间上阻碍底物ssDNA结合,进而通过直接的蛋白质-蛋白质相互作用使毒素失活。我们的数据支持DarG独特的双层DarT毒素中和机制,这对于在正常生长条件下控制毒素分子非常重要。

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