Wu Min, Kim Sahn-Ho, Datta Indrani, Levin Albert, Dyson Gregory, Li Jing, Kaypee Stephanie, Swamy M Mahadeva, Gupta Nilesh, Kwon Ho Jeong, Menon Mani, Kundu Tapas K, Reddy G Prem-Veer
Vattikuti Urology Institute, Henry Ford Hospital, Detroit, MI, USA.
Bioinformatics Core, Public Health Sciences, Henry Ford Hospital, Detroit, MI, USA.
Oncotarget. 2015 Mar 20;6(8):6136-50. doi: 10.18632/oncotarget.3346.
There is a critical need for therapeutic agents that can target the amino-terminal domain (NTD) of androgen receptor (AR) for the treatment of castration-resistant prostate cancer (CRPC). Calmodulin (CaM) binds to the AR NTD and regulates AR activity. We discovered that Hydrazinobenzoylcurcumin (HBC), which binds exclusively to CaM, inhibited AR activity. HBC abrogated AR interaction with CaM, suppressed phosphorylation of AR Serine81, and blocked the binding of AR to androgen-response elements. RNA-Seq analysis identified 57 androgen-regulated genes whose expression was significantly (p ≤ 0.002) altered in HBC treated cells as compared to controls. Oncomine analysis revealed that genes repressed by HBC are those that are usually overexpressed in prostate cancer (PCa) and genes stimulated by HBC are those that are often down-regulated in PCa, suggesting a reversing effect of HBC on androgen-regulated gene expression associated with PCa. Ingenuity Pathway Analysis revealed a role of HBC affected genes in cellular functions associated with proliferation and survival. HBC was readily absorbed into the systemic circulation and inhibited the growth of xenografted CRPC tumors in nude mice. These observations demonstrate that HBC inhibits AR activity by targeting the AR NTD and suggest potential usefulness of HBC for effective treatment of CRPC.
迫切需要能够靶向雄激素受体(AR)氨基末端结构域(NTD)的治疗药物来治疗去势抵抗性前列腺癌(CRPC)。钙调蛋白(CaM)与AR NTD结合并调节AR活性。我们发现,仅与CaM结合的肼基苯甲酰姜黄素(HBC)可抑制AR活性。HBC消除了AR与CaM的相互作用,抑制了AR丝氨酸81的磷酸化,并阻断了AR与雄激素反应元件的结合。RNA测序分析确定了57个雄激素调节基因,与对照组相比,其在HBC处理的细胞中的表达有显著(p≤0.002)变化。Oncomine分析显示,被HBC抑制的基因通常在前列腺癌(PCa)中过表达,而被HBC刺激的基因通常在PCa中下调,这表明HBC对与PCa相关的雄激素调节基因表达具有逆转作用。 Ingenuity通路分析揭示了HBC影响的基因在与增殖和存活相关的细胞功能中的作用。HBC很容易被吸收进入体循环,并抑制裸鼠体内异种移植的CRPC肿瘤的生长。这些观察结果表明,HBC通过靶向AR NTD抑制AR活性,并提示HBC在有效治疗CRPC方面的潜在用途。