DDX5 inhibits inflammation by modulating m6A levels of TLR2/4 transcripts during bacterial infection

Author:

Xu JianORCID,Liu Li-Yuan,Zhi Fei-Jie,Song Yin-Juan,Zhang Zi-Hui,Li Bin,Zheng Fu-Ying,Gao Peng-Cheng,Zhang Su-Zi,Zhang Yu-Yu,Zhang Ying,Qiu Ying,Jiang Bo,Li Yong-Qing,Peng ChenORCID,Chu Yue-FengORCID

Abstract

AbstractDExD/H-box helicases are crucial regulators of RNA metabolism and antiviral innate immune responses; however, their role in bacteria-induced inflammation remains unclear. Here, we report that DDX5 interacts with METTL3 and METTL14 to form an m6A writing complex, which adds N6-methyladenosine to transcripts of toll-like receptor (TLR) 2 and TLR4, promoting their decay via YTHDF2-mediated RNA degradation, resulting in reduced expression of TLR2/4. Upon bacterial infection, DDX5 is recruited to Hrd1 at the endoplasmic reticulum in an MyD88-dependent manner and is degraded by the ubiquitin-proteasome pathway. This process disrupts the DDX5 m6A writing complex and halts m6A modification as well as degradation of TLR2/4 mRNAs, thereby promoting the expression of TLR2 and TLR4 and downstream NF-κB activation. The role of DDX5 in regulating inflammation is also validated in vivo, as DDX5- and METTL3-KO mice exhibit enhanced expression of inflammatory cytokines. Our findings show that DDX5 acts as a molecular switch to regulate inflammation during bacterial infection and shed light on mechanisms of quiescent inflammation during homeostasis.

Funder

The Youth Innovation Program of Chinese Academy of Agricultural Science

MOST | National Natural Science Foundation of China

The Key Program of the Natural Science Foundation of Gansu Province

The LVRI Young Talent Program

LVRI Yuan-Heng Talent Program

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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