MAPK Signaling‐Mediated RFNG Phosphorylation and Nuclear Translocation Restrain Oxaliplatin‐Induced Apoptosis and Ferroptosis

Author:

Di Yuqin12,Zhang Xiang2,Wen Xiangqiong2,Qin Jiale2,Ye Lvlan23,Wang Youpeng4,Song Mei5,Wang Ziyang26ORCID,He Weiling27

Affiliation:

1. Molecular Diagnosis and Gene Testing Center The First Affiliated Hospital Sun Yat‐sen University Guangzhou Guangdong 510080 China

2. Department of Gastrointestinal Surgery The First Affiliated Hospital Sun Yat‐sen University Guangzhou Guangdong 510080 China

3. Department of Biochemistry Zhongshan School of Medicine Sun Yat‐sen University Guangzhou Guangdong 510080 China

4. Center of Hepato‐Pancreato‐Biliary Surgery The First Affiliated Hospital Sun Yat‐sen University Guangzhou Guangdong 510080 China

5. Institute of Precision Medicine The First Affiliated Hospital Sun Yat‐Sen University Guangzhou Guangdong 510080 China

6. Center for Translational Medicine The First Affiliated Hospital Sun Yat‐sen University Guangzhou Guangdong 510080 China

7. Department of Gastrointestinal Surgery Xiang'an Hospital of Xiamen University School of Medicine Xiamen University Xiamen Fujian 361000 China

Abstract

AbstractChemotherapy resistance remains a major challenge in the treatment of colorectal cancer (CRC). Therefore, it is crucial to develop novel strategies to sensitize cancer cells to chemotherapy. Here, the fringe family is screened to determine their contribution to chemotherapy resistance in CRC. It is found that RFNG depletion significantly sensitizes cancer cells to oxaliplatin treatment. Mechanistically, chemotherapy‐activated MAPK signaling induces ERK to phosphorylate RFNG Ser255 residue. Phosphorylated RFNG S255 (pS255) interacts with the nuclear importin proteins KPNA1/importin‐α1 and KPNB1/importin‐β1, leading to its translocation into the nucleus where it targets p53 and inhibits its phosphorylation by competitively inhibiting the binding of CHK2 to p53. Consequently, the expression of CDKN1A is decreased and that of SLC7A11 is increased, leading to the inhibition of apoptosis and ferroptosis. In contrast, phosphor‐deficient RFNG S225A mutant showed increased apoptosis and ferroptosis, and exhibited a notable response to oxaliplatin chemotherapy both in vitro and in vivo. It is further revealed that patients with low RFNG pS255 exhibited significant sensitivity to oxaliplatin in a patient‐derived xenograft (PDX) model. These findings highlight the crosstalk between the MAPK and p53 signaling pathways through RFNG, which mediates oxaliplatin resistance in CRC. Additionally, this study provides guidance for oxaliplatin treatment of CRC patients.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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