Inhibition of METTL3 attenuates renal injury and inflammation by alleviating TAB3 m6A modifications via IGF2BP2-dependent mechanisms

Author:

Wang Jia-nan1ORCID,Wang Fang12ORCID,Ke Jing3ORCID,Li Zeng1ORCID,Xu Chuan-hui1,Yang Qin1,Chen Xin1,He Xiao-yan1,He Yuan1,Suo Xiao-guo1,Li Chao1,Yu Ju-tao1ORCID,Jiang Ling4ORCID,Ni Wei-jian1ORCID,Jin Juan5,Liu Ming-ming1ORCID,Shao Wei5ORCID,Yang Chen6ORCID,Gong Qian7,Chen Hai-yong8ORCID,Li Jun1,Wu Yong-gui4ORCID,Meng Xiao-ming1ORCID

Affiliation:

1. Inflammation and Immune Mediated Diseases Laboratory of Anhui Province, the Key Laboratory of Anti-inflammatory of Immune Medicines, Ministry of Education, Anhui Institute of Innovative Drugs, School of Pharmacy, Anhui Medical University, Hefei 230032, China.

2. Department of Pharmacy, Lu’an Hospital of Anhui Medical University, Lu’an People’s Hospital of Anhui Province, Lu’an 237006, China.

3. Department of Pathology, The First Affiliated Hospital of Anhui Medical University, Hefei 230032, China.

4. Department of Nephropathy, The First Affiliated Hospital of Anhui Medical University, Hefei 230032, China.

5. School of Basic Medicine, Anhui Medical University, Hefei 23003, China.

6. Key Laboratory of Prevention and Management of Chronic Kidney Disease of Zhanjiang City, Institute of Nephrology, Affiliated Hospital of Guangdong Medical University, Zhanjiang, Guangdong 524001, China.

7. Department of Cardiovascular Surgery, The First Affiliated Hospital of Anhui Medical University, Hefei 230032, China.

8. School of Chinese Medicine, The University of Hong Kong, Hong Kong 999077, China.

Abstract

The role of N 6 -methyladenosine (m6A) modifications in renal diseases is largely unknown. Here, we characterized the role of N 6 -adenosine-methyltransferase-like 3 (METTL3), whose expression is elevated in renal tubules in different acute kidney injury (AKI) models as well as in human biopsies and cultured tubular epithelial cells (TECs). METTL3 silencing alleviated renal inflammation and programmed cell death in TECs in response to stimulation by tumor necrosis factor–α (TNF-α), cisplatin, and lipopolysaccharide (LPS), whereas METTL3 overexpression had the opposite effects. Conditional knockout of METTL3 from mouse kidneys attenuated cisplatin- and ischemic/reperfusion (I/R)–induced renal dysfunction, injury, and inflammation. Moreover, TAB3 [TGF-β–activated kinase 1 (MAP3K7) binding protein 3] was identified as a target of METTL3 by m6A methylated RNA immunoprecipitation sequencing and RNA sequencing. The stability of TAB3 was increased through binding of IGF2BP2 (insulin-like growth factor 2 binding protein 2) to its m6A-modified stop codon regions. The proinflammatory effects of TAB3 were then explored both in vitro and in vivo. Adeno-associated virus 9 (AAV9)–mediated METTL3 silencing attenuated renal injury and inflammation in cisplatin- and LPS-induced AKI mouse models. We further identified Cpd-564 as a METTL3 inhibitor that had better protective effects against cisplatin- and ischemia/reperfusion-induced renal injury and inflammation than S -adenosyl- l -homocysteine, a previously identified METTL3 inhibitor. Collectively, METTL3 promoted m6A modifications of TAB3 and enhanced its stability via IGF2BP2-dependent mechanisms. Both genetic and pharmacological inhibition of METTL3 attenuated renal injury and inflammation, suggesting that the METTL3/TAB3 axis is a potential target for treatment of AKI.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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