Feng Xue, Yan Naimeng, Sun Weibin, Zheng Shanliang, Jiang Sixiong, Wang Jinxia, Guo Chunmei, Hao Lihong, Tian Yuxiang, Liu Shuqing, Sun Ming-Zhong
1Department of Biotechnology, College of Basic Medical Sciences, Dalian Medical University, 116044 Dalian, China.
2Department of Biochemistry, College of Basic Medical Sciences, Dalian Medical University, 116044 Dalian, China.
Cell Death Discov. 2019 Apr 15;5:89. doi: 10.1038/s41420-019-0167-5. eCollection 2019.
Clear cell renal cell carcinoma (ccRCC) is the most aggressive RCC subtype with high metastasis, chemotherapy and radiotherapy resistance, and poor prognosis. This study attempted to establish the deregulations of miR-4521 and FAM129A together with their correlation to and mechanism of regulation of ccRCC development and progression. FAM129A acted as tumor promotor and miR-4521 acted as a suppressor in ccRCC. As measured in surgical tumorous tissues from ccRCC patients, FAM129A overexpression and miR-4521 deficiency together contributed to ccRCC progression by promoting advances in patients' TNM stage and Fuhrman grade. Both the FAM129A knockdown and miR-4521 overexpression could reduce the in vitro migration and invasion abilities of renal cancer cells 786-O and ACHN, through the TIMP-1/MMP2/MMP9 pathway and could decrease their proliferation by promoting their apoptosis through the MDM2/p53/Bcl2/Bax pathway. By directly targeting the 3'-UTR domain of , miR-4521 was negatively correlated with /FAM129A levels in ccRCC progression and renal cancer cell malignancies. This work establishes the miR-4521-FAM129A axial regulation mechanism in ccRCC. Micro-4521 deficiency leads to /FAM129A upregulation, which synergistically enhances the migration and invasion of renal cancer cells due to the induced decrease of TIMP-1 and increases of MMP2 and MMP9, and increases their growth through escaping apoptosis by suppressing p53 by way of upregulation of induced MDM2. The current work provides new clues to assist fundamental research into the diagnosis and treatment of ccRCC.
透明细胞肾细胞癌(ccRCC)是最具侵袭性的肾细胞癌亚型,具有高转移率、对化疗和放疗耐药以及预后不良的特点。本研究试图确定miR - 4521和FAM129A的失调情况,以及它们与ccRCC发生发展和进展的相关性及调控机制。在ccRCC中,FAM129A起肿瘤促进作用,miR - 4521起抑制作用。在ccRCC患者的手术肿瘤组织中检测发现,FAM129A的过表达和miR - 4521的缺失共同通过促进患者TNM分期和Fuhrman分级的进展,推动了ccRCC的进展。FAM129A基因敲低和miR - 4521过表达均可通过TIMP - 1/MMP2/MMP9途径降低肾癌细胞786 - O和ACHN的体外迁移和侵袭能力,并通过MDM2/p53/Bcl2/Bax途径促进细胞凋亡来减少其增殖。通过直接靶向 的3'-UTR结构域,miR - 4521在ccRCC进展和肾癌细胞恶性程度方面与 /FAM129A水平呈负相关。本研究确立了ccRCC中miR - 4521 - FAM129A轴调控机制。Micro - 4521的缺乏导致 /FAM129A上调,这通过诱导TIMP - 1减少、MMP2和MMP9增加,协同增强肾癌细胞的迁移和侵袭能力,并通过上调诱导的MDM2抑制p53从而逃避凋亡来增加其生长。目前的研究工作为ccRCC的诊断和治疗基础研究提供了新线索。