Phosphorylated SHMT2 Regulates Oncogenesis Through m6A Modification in Lung Adenocarcinoma

Author:

Han Tianyu123ORCID,Wang Yanan123,Cheng Minzhang123,Hu Qifan45,Wan Xiaorui123,Huang Menglin5,Liu Yuhan5,Xun Wenze5,Xu Jin5,Wang Lei5,Luo Ruiguang5,Yuan Yi6,Wang Keru6,Wang Jianbin45

Affiliation:

1. Jiangxi Institute of Respiratory Disease Department of Respiratory and Critical Care Medicine The First Affiliated Hospital Jiangxi Medical College Nanchang University Nanchang City Jiangxi 330006 China

2. Jiangxi Clinical Research Center for Respiratory Diseases Nanchang City Jiangxi 330006 China

3. China‐Japan Friendship Jiangxi Hospital National Regional Center for Respiratory Medicine Nanchang City Jiangxi 330200 China

4. Department of Thoracic Surgery The First Affiliated Hospital Jiangxi Medical College Nanchang University Nanchang City Jiangxi 330006 China

5. School of Basic Medical Sciences Nanchang University Nanchang City Jiangxi 330031 China

6. School of Huankui Academy Nanchang University Nanchang City Jiangxi 330031 China

Abstract

AbstractTargeting cancer‐specific metabolic processes is a promising therapeutic strategy. Here, this work uses a compound library that directly inhibits metabolic enzymes to screen the potential metabolic targets in lung adenocarcinoma (LUAD). SHIN1, the specific inhibitor of serine hydroxymethyltransferase 1/2 (SHMT1/2), has a highly specific inhibitory effect on LUAD cells, and this effect depends mainly on the overexpression of SHMT2. This work clarifies that mitogen‐activated protein kinase 1 (MAPK1)‐mediated phosphorylation at Ser90 is the key mechanism underlying SHMT2 upregulation in LUAD and that this phosphorylation stabilizes SHMT2 by reducing STIP1 homology and U‐box containing protein 1 (STUB1)‐mediated ubiquitination and degradation. SHMT2‐Ser90 dephosphorylation decreases S‐adenosylmethionine levels in LUAD cells, resulting in reduced N6‐methyladenosine (m6A) levels in global RNAs without affecting total protein or DNA methylation. Methylated RNA immunoprecipitation sequencing (MeRIP‐Seq) and RNA sequencing (RNA‐Seq) analyses further demonstrate that SHMT2‐Ser90 dephosphorylation accelerates the RNA degradation of oncogenic genes by reducing m6A modification, leading to the inhibition of tumorigenesis. Overall, this study elucidates a new regulatory mechanism of SHMT2 during oncogenesis and provides a theoretical basis for targeting SHMT2 as a therapeutic target in LUAD.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangxi Province

Publisher

Wiley

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