Department of Oral and Maxillofacial Surgery, Gifu University Graduate School of Medicine, Yanagido, Gifu, Japan.
Department of Pathology and Translational Research, Gifu University Graduate School of Medicine, Yanagido, Gifu, Japan.
J Cell Mol Med. 2018 Feb;22(2):1026-1033. doi: 10.1111/jcmm.13456. Epub 2017 Nov 22.
The WW domain-containing oxidoreductase (WWOX) functions as a tumour suppressor in oral carcinogenesis. As aberrant TMEM207 expression may lead to tumour progression by hampering the tumour suppressor function of WWOX in various cancers, we explored the expression and pathobiological properties of TMEM207, focusing on the WWOX-mediated regulation of the HIF-1α pathway in oral squamous cell carcinoma (OSCC). TMEM207 immunoreactivity was detected in 40 of 90 OSCC samples but not in neighbouring non-tumorous epithelial tissues. Moreover, TMEM207 expression was significantly correlated with lymph node metastasis and poor prognosis. An in situ proximal ligation assay demonstrated the colocalization of TMEM207 and WWOX in invasive OSCC cells, especially glycogen-rich ones. Enforced expression of TMEM207 abrogated the binding of WWOX to HIF-1α, increased HIF-1α and GLUT-1 expression, even under normoxic conditions, and promoted tumour growth in a xenoplant assay using SAS tongue squamous cancer cells. In contrast, TMEM207 knockdown decreased GLUT-1 expression in two OSCC cell lines. As a whole, our findings indicate that the aberrant expression of TMEM207 contributes to tumour progression in OSCC, possibly via promoting aerobic glycolysis.
WW 结构域包含的氧化还原酶 (WWOX) 在口腔癌发生中作为一种肿瘤抑制因子发挥作用。由于 TMEM207 的异常表达可能通过在各种癌症中干扰 WWOX 的肿瘤抑制功能导致肿瘤进展,因此我们研究了 TMEM207 的表达和病理生物学特性,重点研究了 TMEM207 在口腔鳞状细胞癌 (OSCC) 中对 HIF-1α 通路的 WWOX 介导调节。在 90 个 OSCC 样本中的 40 个样本中检测到 TMEM207 免疫反应性,但在相邻的非肿瘤上皮组织中未检测到。此外,TMEM207 的表达与淋巴结转移和不良预后显著相关。原位邻近连接分析表明,TMEM207 和 WWOX 在侵袭性 OSCC 细胞中,尤其是富含糖原的细胞中存在共定位。TMEM207 的强制表达破坏了 WWOX 与 HIF-1α 的结合,即使在常氧条件下,也增加了 HIF-1α 和 GLUT-1 的表达,并促进了 SAS 舌鳞癌细胞异种移植试验中的肿瘤生长。相比之下,在两种 OSCC 细胞系中,TMEM207 的敲低降低了 GLUT-1 的表达。总的来说,我们的研究结果表明,TMEM207 的异常表达可能通过促进有氧糖酵解促进 OSCC 的肿瘤进展。