Mycobacterium tuberculosis inhibits METTL14-mediated m6A methylation of Nox2 mRNA and suppresses anti-TB immunity

Mingtong Ma(Tongji University), Yongjia Duan(Tongji University), Cheng Peng(Tongji University), You Wu(Shanghai East Hospital), Xinning Zhang(Peking University), Boran Chang(Center for Excellence in Molecular Cell Science), Fei Wang(Tongji University), Hyun Mo Yang(Tongji University), Ruijuan Zheng(Tongji University), Hongyu Cheng(Tongji University), Yuanna Cheng(Tongji University), Yifan He(Tongji University), Jingping Huang(Tongji University), Jinming Lei(Tongji University), Hanyu Ma(Tongji University), Liru Li(Tongji University), Jie Wang(Tongji University), Xiaochen Huang(Tongji University), Fen Tang(Tongji University), Jun Liu(Peking University), Jinsong Li(Center for Excellence in Molecular Cell Science), Ruoyan Ying(Tongji University), Peng Wang(Tongji University), Wei Sha(Tongji University), Yawei Gao(Tongji University), Lin Wang(Tongji University), Baoxue Ge(Tongji University)
Cell Discovery
March 29, 2024
Cited by 19Open Access
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Abstract

Abstract Internal N 6 -methyladenosine (m 6 A) modifications are among the most abundant modifications of messenger RNA, playing a critical role in diverse biological and pathological processes. However, the functional role and regulatory mechanism of m 6 A modifications in the immune response to Mycobacterium tuberculosis infection remains unknown. Here, we report that methyltransferase-like 14 (METTL14)-dependent m 6 A methylation of NAPDH oxidase 2 ( Nox2 ) mRNA was crucial for the host immune defense against M. tuberculosis infection and that M. tuberculosis -secreted antigen EsxB (Rv3874) inhibited METTL14-dependent m 6 A methylation of Nox2 mRNA. Mechanistically, EsxB interacted with p38 MAP kinase and disrupted the association of TAB1 with p38, thus inhibiting the TAB1-mediated autophosphorylation of p38. Interaction of EsxB with p38 also impeded the binding of p38 with METTL14, thereby inhibiting the p38-mediated phosphorylation of METTL14 at Thr72. Inhibition of p38 by EsxB restrained liquid–liquid phase separation (LLPS) of METTL14 and its subsequent interaction with METTL3, preventing the m 6 A modification of Nox2 mRNA and its association with the m 6 A-binding protein IGF2BP1 to destabilize Nox2 mRNA, reduce ROS levels, and increase intracellular survival of M. tuberculosis . Moreover, deletion or mutation of the phosphorylation site on METTL14 impaired the inhibition of ROS level by EsxB and increased bacterial burden or histological damage in the lungs during infection in mice. These findings identify a previously unknown mechanism that M. tuberculosis employs to suppress host immunity, providing insights that may empower the development of effective immunomodulators that target M. tuberculosis .


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