DRAIC mediates hnRNPA2B1 stability and m6A-modified IGF1R instability to inhibit tumor progression

DRAIC 介导 hnRNPA2B1 稳定性和 m6A 修饰的 IGF1R 不稳定性以抑制肿瘤进展

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作者:Ya Wen #, Xiwang Yang #, Yifei Li, Xueqing Zhao, Ao Ding, Dalong Song, Liqiang Duan, Shuwen Cheng, Xiaofeng Zhu, Bo Peng, Xiaoli Chang, Chang Zhang, Facai Yang, Tianyou Cheng, He Wang, Yibi Zhang, Tiantian Zhang, Shizhong Zheng, Li Ren, Shan Gao

Abstract

Type 1 insulin-like growth factor receptor (IGF1R) plays an important role in cancer, however, posttranscriptional regulation such as N6-methyladenosine (m6A) of IGF1R remains unclear. Here, we reveal a role for a lncRNA Downregulated RNA in Cancer (DRAIC) suppress tumor growth and metastasis in clear cell Renal Carcinoma (ccRCC). Mechanistically, DRAIC physically interacts with heterogeneous nuclear ribonucleoprotein A2B1 (hnRNPA2B1) and enhances its protein stability by blocking E3 ligase F-box protein 11 (FBXO11)-mediated ubiquitination and proteasome-dependent degradation. Subsequently, hnRNPA2B1 destabilizes m6A modified-IGF1R, leading to inhibition of ccRCC progression. Moreover, four m6A modification sites are identified to be responsible for the mRNA degradation of IGF1R. Collectively, our findings reveal that DRAIC/hnRNPA2B1 axis regulates IGF1R mRNA stability in an m6A-dependent manner and highlights an important mechanism of IGF1R fate. These findings shed light on DRAIC/hnRNPA2B1/FBXO11/IGF1R axis as potential therapeutic targets in ccRCC and build a link of molecular fate between m6A-modified RNA and ubiquitin-modified protein.

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