Goodman Cancer Institute, McGill University, Montréal, Québec, Canada.
Department of Biochemistry, Faculty of Medicine and Health Sciences, McGill University, Montréal, Québec, Canada.
Mol Cancer Res. 2023 Oct 2;21(10):1050-1063. doi: 10.1158/1541-7786.MCR-23-0086.
Dysregulation of mTOR signaling plays a critical role in promoting prostate cancer growth. HOXB13, a homeodomain transcription factor, is known to influence the androgen response and prostate cancer development. Recently, HOXB13 was found to complex with mTOR on chromatin. However, the functional crosstalk between HOXB13 and mTOR remains elusive. We now report that mTOR directly interacts with and hierarchically phosphorylates HOXB13 at threonine 8 and 41 then serine 31 to promote its interaction with the E3 ligase SKP2 while enhancing its oncogenic properties. Expression of HOXB13 harboring phosphomimetic mutations at the mTOR-targeted sites stimulates prostate cancer cellular growth both in vitro and in murine xenografts. Transcriptional profiling studies revealed a phospho-HOXB13-dependent gene signature capable of robustly discriminating between normal prostate tissues, primary and metastatic prostate cancer samples. This work uncovers a previously unanticipated molecular cascade by which mTOR directly phosphorylates HOXB13 to dictate a specific gene program with oncogenic implications in prostate cancer.
Control of HOXB13 transcriptional activity via its direct phosphorylation by the mTOR kinase is a potential therapeutic avenue for the management of advanced prostate cancer.
mTOR 信号的失调在促进前列腺癌生长中起着关键作用。HOXB13 是一种同源域转录因子,已知会影响雄激素反应和前列腺癌的发展。最近,发现 HOXB13 与 mTOR 在染色质上形成复合物。然而,HOXB13 和 mTOR 之间的功能串扰仍然难以捉摸。我们现在报告 mTOR 直接与 HOXB13 相互作用,并在 threonine 8 和 41 以及 serine 31 处对其进行级联磷酸化,以促进其与 E3 连接酶 SKP2 的相互作用,同时增强其致癌特性。表达具有 mTOR 靶向位点磷酸模拟突变的 HOXB13 可刺激体外和小鼠异种移植物中的前列腺癌细胞生长。转录谱研究揭示了一个磷酸化 HOXB13 依赖性基因特征,能够在正常前列腺组织、原发性和转移性前列腺癌样本之间进行稳健区分。这项工作揭示了一条以前未预料到的分子级联,其中 mTOR 直接磷酸化 HOXB13,以决定前列腺癌中具有致癌意义的特定基因程序。
通过 mTOR 激酶对 HOXB13 转录活性的直接磷酸化控制可能是管理晚期前列腺癌的一种潜在治疗途径。