Qin Jiang-Jiang, Li Xin, Wang Wei, Zi Xiaolin, Zhang Ruiwen
Department of Pharmacological and Pharmaceutical Sciences, College of Pharmacy, University of Houston, Houston, TX, United States.
Department of Pharmaceutical Sciences, School of Pharmacy, Texas Tech University Health Sciences Center, Amarillo, TX, United States.
Front Pharmacol. 2017 Dec 14;8:917. doi: 10.3389/fphar.2017.00917. eCollection 2017.
The MDM2 and MDMX oncogenes are overexpressed in various types of human cancer and are highly associated with the initiation, progression, metastasis and chemotherapeutic resistance of these diseases, including prostate cancer. The present study was designed to test a natural MDM2 inhibitor, Inulanolide A (InuA), for anti-prostate cancer activity and to determine the underlying mechanism(s) of action. InuA directly bound to the RING domains of both MDM2 and MDMX with high affinity and specificity and disrupted MDM2-MDMX binding, markedly enhancing MDM2 protein degradation. We further discovered that InuA bound to the DNA binding domain of NFAT1, resulting in marked inhibition of transcription. InuA inhibited the proliferation, migration, and invasion of prostate cancer cells, regardless of their p53 status and AR responsiveness. Double knockdown of MDM2 and NFAT1 also revealed that the expression of both of these molecules is important for InuA's inhibitory effects on the proliferation and invasion of prostate cancer cells. In summary, InuA represents a novel class of bifunctional MDM2 inhibitors, and should be further investigated as a candidate lead compound for prostate cancer prevention and therapy.
MDM2和MDMX癌基因在多种类型的人类癌症中过表达,并且与这些疾病(包括前列腺癌)的发生、发展、转移和化疗耐药性高度相关。本研究旨在测试一种天然的MDM2抑制剂Inulanolide A(InuA)的抗前列腺癌活性,并确定其潜在的作用机制。InuA以高亲和力和特异性直接结合MDM2和MDMX的RING结构域,并破坏MDM2-MDMX结合,显著增强MDM2蛋白降解。我们进一步发现InuA与NFAT1的DNA结合结构域结合,导致转录显著抑制。InuA抑制前列腺癌细胞的增殖、迁移和侵袭,无论其p53状态和AR反应性如何。MDM2和NFAT1的双重敲低还表明,这两种分子的表达对于InuA对前列腺癌细胞增殖和侵袭的抑制作用很重要。总之,InuA代表了一类新型的双功能MDM2抑制剂,应作为前列腺癌预防和治疗的候选先导化合物进行进一步研究。