Yang Lixuan, He Kejun, Yan Sheng, Yang Yibing, Gao Xinya, Zhang Maolei, Xia Zhibo, Huang Zhengsong, Huang Suyun, Zhang Nu
Department of Neurosurgery, The First Affiliated Hospital of Sun Yat-sen University, Guangzhou, Guangdong Province, China.
Department of Neurosurgery, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
Neuro Oncol. 2017 Mar 1;19(3):352-363. doi: 10.1093/neuonc/now229.
Forkhead box M1 (FOXM1) is overexpressed and activates numerous oncoproteins in tumors. However, the mechanism by which the FOXM1 protein aberrantly accumulates in human cancer remains uncertain. This study was designed to clarify the upstream signaling pathway(s) that regulate FOXM1 protein stability and transcriptional activity.
Mass spectrometry and immunoprecipitation were performed to identify the FOXM-metadherin (MTDH) interaction. In vivo and in vitro ubiquitination assays were conducted to test the effect of MTDH on FOXM1 stability. Chromatin immunoprecipitation assays were used to determine the involvement of MTDH in FOXM1 transcriptional activity. Cell invasion assays, tube formation assays, and in vivo tumor formation assays were performed to evaluate the cooperative activities of FOXM1 and MTDH during tumorigenesis.
MTDH directly interacts with FOXM1 via the N-terminal inhibitory domain of MTDH, and this interaction disrupted the binding of cadherin-1 to FOXM1, thus protecting FOXM1 from subsequent proteasomal degradation. Deleting the MTDH-binding sites of FOXM1 abolished the MTDH overexpression-mediated stabilization of FOXM1. MTDH also bound to FOXM1 target gene promoters and enhanced FOXM1 transcriptional activity. MTDH knockdown destabilized FOXM1 and attenuated its transcriptional activity, consequently inhibiting cell cycle progression, angiogenesis, and cancer cell invasion in vitro and in vivo; these effects were abolished via forced overexpression of a stabilized mutant form of FOXM1. Thus, MTDH stabilized FOXM1 and supported the sustained activation of FOXM1 target genes.
These findings highlight a novel MTDH-regulated mechanism of FOXM1 stabilization and provide profound insight into the tumorigenic events simultaneously mediated by FOXM1 and MTDH.
叉头框蛋白M1(FOXM1)在肿瘤中过表达并激活多种癌蛋白。然而,FOXM1蛋白在人类癌症中异常积累的机制仍不明确。本研究旨在阐明调节FOXM1蛋白稳定性和转录活性的上游信号通路。
进行质谱分析和免疫沉淀以鉴定FOXM1与元黏附素(MTDH)的相互作用。进行体内和体外泛素化试验以检测MTDH对FOXM1稳定性的影响。采用染色质免疫沉淀试验确定MTDH是否参与FOXM1的转录活性。进行细胞侵袭试验、管腔形成试验和体内肿瘤形成试验,以评估FOXM1和MTDH在肿瘤发生过程中的协同作用。
MTDH通过其N端抑制结构域直接与FOXM1相互作用,这种相互作用破坏了钙黏蛋白-1与FOXM1的结合,从而保护FOXM1免受随后的蛋白酶体降解。删除FOXM1的MTDH结合位点可消除MTDH过表达介导的FOXM1稳定作用。MTDH还与FOXM1靶基因启动子结合并增强FOXM1的转录活性。敲低MTDH可使FOXM1不稳定并减弱其转录活性,从而在体外和体内抑制细胞周期进程、血管生成和癌细胞侵袭;通过强制过表达稳定的FOXM1突变体形式可消除这些作用。因此,MTDH稳定了FOXM1并支持FOXM1靶基因的持续激活。
这些发现突出了一种新的MTDH调节的FOXM1稳定机制,并为FOXM1和MTDH同时介导的致瘤事件提供了深刻见解。