Androgen receptor splice variants drive castration-resistant prostate cancer metastasis by activating distinct transcriptional programs

前列腺癌 剪接 雄激素受体 转移 癌症研究 阉割 生物 肿瘤科 内科学 医学 癌症 基因 遗传学 激素
作者
Dong Han,Maryam Labaf,Yawei Zhao,Jude Owiredu,Songqi Zhang,Krishna Patel,Kavita Venkataramani,Jocelyn S. Steinfeld,Wanting Han,Muqing Li,Mingyu Li,Zifeng Wang,Anna Besschetnova,Susan Patalano,M. Mulhearn,Jill A. Macoska,Xin Yuan,Steven P. Balk,Peter S. Nelson,Stephen R. Plymate,Shuai Gao,Kellee R. Siegfried,Ruihua Liu,Mary M. Stangis,Gabrielle E. Foxa,Piotr J. Czernik,Bart O. Williams,Kourosh Zarringhalam,Xiaohong Li,Changmeng Cai
出处
期刊:Journal of Clinical Investigation [American Society for Clinical Investigation]
标识
DOI:10.1172/jci168649
摘要

One critical mechanism through which prostate cancer (PCa) adapts to treatments targeting androgen receptor (AR) signaling is the emergence of ligand-binding domain-truncated and constitutively active AR splice variants, particularly AR-V7. While AR-V7 has been intensively studied, its ability to activate distinct biological functions compared to the full-length AR (AR-FL), and its role in regulating the metastatic progression of castration-resistant PCa (CRPC), remains unclear. Our study found that, under castrated conditions, AR-V7 strongly induced osteoblastic bone lesions, a response not observed with AR-FL overexpression. Through combined ChIP-seq, ATAC-seq, and RNA-seq analyses, we demonstrated that AR-V7 uniquely accesses the androgen-responsive elements in compact chromatin regions, activating a distinct transcription program. This program was highly enriched for genes involved in epithelial-mesenchymal transition and metastasis. Notably, we discovered that SOX9, a critical metastasis driver gene, was a direct target and downstream effector of AR-V7. Its protein expression was dramatically upregulated in AR-V7-induced bone lesions. Moreover, we found that Ser81 phosphorylation enhanced AR-V7's pro-metastasis function by selectively altering its specific transcription program. Blocking this phosphorylation with CDK9 inhibitors impaired the AR-V7-mediated metastasis program. Overall, our study has provided molecular insights into the role of AR splice variants in driving the metastatic progression of CRPC.

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