Department of Urology, Chinese PLA General Hospital, 100853, Beijing, China.
George Whipple Lab for Cancer Research, Departments of Pathology, Urology, Radiation Oncology, and The Wilmot Cancer Institute, University of Rochester Medical Center, Rochester, NY, 14642, USA.
Oncogene. 2020 Oct;39(43):6677-6691. doi: 10.1038/s41388-020-01455-0. Epub 2020 Sep 17.
Recent studies indicated that the androgen receptor (AR) plays important roles in modulating metastasis of VHL-mutant clear cell renal cell carcinoma (ccRCC). However, the precise mechanisms of AR roles in VHL wild-type (VHL-wt) ccRCC, remain unclear. Here we found that AR interacted with VHL to modulate the metastasis of VHL-wt ccRCC via an oxygen-dependent manner. Mechanism dissection revealed that AR could transcriptionally suppress the miR-185-5p expression in the presence of functional VHL-wt protein under a normoxic condition, which might then result in increasing the expression of VEGF-A and VEGF-C via targeting the 3'UTR of mRNAs at a post-transcriptional level. In contrast, under a hypoxic condition, AR could increase miR-185-5p expression to suppress VEGF-C expression, yet this miR-185-5p effect on VEGF-A was reversed via AR's positive regulation on the HIF2α-increased VEGF-A expression that resulted in increasing VEGF-A in the VHL-wt RCC cells. These distinct AR functions under different oxygen conditions may involve the VHL-impacted ubiquitination and nuclear localization of AR. The differential regulation of VEGF-A vs VEGF-C by AR may then result in differential impacts on the ccRCC metastatic destinations of VHL-wt ccRCC cells under different oxygen conditions. These finer mechanisms may help in the development of a novel therapy to better suppress the ccRCC progression under different oxygenization conditions.
最近的研究表明,雄激素受体(AR)在调节 VHL 突变型透明细胞肾细胞癌(ccRCC)的转移中发挥重要作用。然而,AR 在 VHL 野生型(VHL-wt)ccRCC 中的确切作用机制仍不清楚。在这里,我们发现 AR 通过一种依赖于氧的方式与 VHL 相互作用,调节 VHL-wt ccRCC 的转移。机制分析表明,在功能正常的 VHL-wt 蛋白存在下,AR 在常氧条件下可以转录抑制 miR-185-5p 的表达,这可能导致通过靶向 mRNA 的 3'UTR 在转录后水平增加 VEGF-A 和 VEGF-C 的表达。相比之下,在低氧条件下,AR 可以增加 miR-185-5p 的表达来抑制 VEGF-C 的表达,但 AR 对 VEGF-A 的这种 miR-185-5p 作用通过 AR 对 HIF2α 增加的 VEGF-A 表达的正向调节而被逆转,导致 VHL-wt RCC 细胞中 VEGF-A 的增加。AR 在不同氧条件下的这些不同功能可能涉及 VHL 影响的 AR 的泛素化和核定位。AR 对 VEGF-A 与 VEGF-C 的差异调节可能导致 VHL-wt ccRCC 细胞在不同氧条件下转移到 ccRCC 的不同部位产生差异影响。这些更精细的机制可能有助于开发一种新的治疗方法,以更好地抑制不同氧合条件下的 ccRCC 进展。