YTHDF3 phase separation regulates HSPA13‐dependent clear cell renal cell carcinoma development and immune evasion

Author:

Dai Chenyun12,Cao Jianfu12,Tang Yuangui1,Jiang Yuxiao1,Luo Chenghua34,Zheng Junfang12ORCID

Affiliation:

1. Beijing Key Laboratory of Cancer Invasion and Metastasis Research, Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences Capital Medical University Beijing China

2. Laboratory for Clinical Medicine Capital Medical University Beijing China

3. Department of Pathology and Key Laboratory for Xinjiang Endemic and Ethnic Diseases Shihezi University School of Medicine Shihezi China

4. Department of Pathology, The First Affiliated Hospital Shihezi University Shihezi China

Abstract

AbstractInsufficient understanding about the immune evasion mechanism leads to the inability in predicting current immunotherapy effects in clear cell renal cell carcinoma (ccRCC) and sensitizing ccRCC to immunotherapy. RNA binding proteins (RBPs) can promote tumor progression and immune evasion. However, research on RBPs, particularly m6A reader YTHDF3, in ccRCC development and immune evasion is limited. In this study, we found that YTHDF3 level was downregulated in ccRCC and was an independent prognostic biomarker for ccRCC. Decreased YTHDF3 expression was correlated with the malignancy, immune evasion, and poor response to anti‐programmed death ligand 1 (PD‐L1)/CTLA‐4 in ccRCC. YTHDF3 overexpression restrained ccRCC cell malignancy, PD‐L1 expression, CD8+ T cell infiltration and activities in vivo, indicating its inhibitory role in ccRCC development and immune evasion. Mechanistically, YTHDF3 WT was found to have phase separation characteristics and suppress ccRCC malignancy and immune evasion. Whereas YTHDF3 mutant, which disrupted phase separation, abolished its function. YTHDF3 enhanced the degradation of its target mRNA HSPA13 by phase separation and recruiting DDX6, resulting in the downregulation of the downstream immune checkpoint PD‐L1. HSPA13 overexpression restored ccRCC malignancy and immune evasion suppressed by YTHDF3 overexpression. In all, our results identify a new model of YTHDF3 in regulating ccRCC progression and immune evasion through phase separation.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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