Global identification of phospho-dependent SCF substrates reveals a FBXO22 phosphodegron and an ERK-FBXO22-BAG3 axis in tumorigenesis

全球范围内对磷酸化依赖性SCF底物的鉴定揭示了FBXO22磷酸化降解子和ERK-FBXO22-BAG3轴在肿瘤发生中的作用

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作者:Ping Liu #,Xiaoji Cong #,Shengjie Liao #,Xinglong Jia #,Xiaomin Wang,Wei Dai,Linhui Zhai,Lei Zhao,Jing Ji,Duan Ni,Zhiwei Liu,Yulu Chen,Lulu Pan,Wei Liu,Jian Zhang,Min Huang,Bin Liu,Minjia Tan

Abstract

SKP1-CUL1-F-box (SCF) ubiquitin ligases play fundamental roles in cellular functions. Typically, substrate phosphorylation is required for SCF recognition and subsequent degradation. However, phospho-dependent substrates remain largely unidentified. Here, using quantitative phoshoproteome approach, we performed a system-wide investigation of phospho-dependent SCF substrates. This strategy identified diverse phospho-dependent candidates. Biochemical verification revealed a mechanism by which SCFFBXO22 recognizes the motif XXPpSPXPXX as a conserved phosphodegron to target substrates for destruction. We further demonstrated BAG3, a HSP70 co-chaperone, is a bona fide substrate of SCFFBXO22. FBXO22 mediates BAG3 ubiquitination and degradation that requires ERK-dependent BAG3 phosphorylation at S377. FBXO22 depletion or expression of a stable BAG3 S377A mutant promotes tumor growth via defects in apoptosis and cell cycle progression in vitro and in vivo. In conclusion, our study identified broad phosphorylation-dependent SCF substrates and demonstrated a phosphodegron recognized by FBXO22 and a novel ERK-FBXO22-BAG3 axis involved in tumorigenesis.

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