Prostate cancer-associated SPOP mutations lead to genomic instability through disruption of the SPOP-HIPK2 axis

前列腺癌相关的 SPOP 突变通过破坏 SPOP-HIPK2 轴导致基因组不稳定

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作者:Xiaofeng Jin, Shi Qing, Qian Li, Hui Zhuang, Liliang Shen, Jinhui Li, Honggang Qi, Ting Lin, Zihan Lin, Jian Wang, Xinyi Cao, Jianye Yang, Qi Ma, Linghua Cong, Yang Xi, Shuai Fang, Xiaodan Meng, Zhaohui Gong, Meng Ye, Shuyun Wang, Chenji Wang, Kun Gao

Abstract

Speckle-type Poz protein (SPOP), an E3 ubiquitin ligase adaptor, is the most frequently mutated gene in prostate cancer. The SPOP-mutated subtype of prostate cancer shows high genomic instability, but the underlying mechanisms causing this phenotype are still largely unknown. Here, we report that upon DNA damage, SPOP is phosphorylated at Ser119 by the ATM serine/threonine kinase, which potentiates the binding of SPOP to homeodomain-interacting protein kinase 2 (HIPK2), resulting in a nondegradative ubiquitination of HIPK2. This modification subsequently increases the phosphorylation activity of HIPK2 toward HP1γ, and then promotes the dissociation of HP1γ from trimethylated (Lys9) histone H3 (H3K9me3) to initiate DNA damage repair. Moreover, the effect of SPOP on the HIPK2-HP1γ axis is abrogated by prostate cancer-associated SPOP mutations. Our findings provide new insights into the molecular mechanism of SPOP mutations-driven genomic instability in prostate cancer.

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