Department of Medicine, Institute for Molecular Medicine and Cell Research, Tumorzentrum Ludwig Heilmeyer-Comprehensive Cancer Center Freiburg, Amsterdam, the Netherlands.
Cancer Sci. 2011 Feb;102(2):351-60. doi: 10.1111/j.1349-7006.2010.01796.x. Epub 2010 Dec 12.
Telomerase plays an important role during immortalization and malignant transformation as crucial steps in the development of human cancer. In a cellular model of oral-esophageal carcinogenesis, recapitulating the human disease, immortalization occurred independent of the activation of telomerase but through the recombination-based alternative lengthening of telomeres (ALT). In this stepwise model, additional overexpression of EGFR led to in vitro transformation and activation of telomerase with homogeneous telomere elongation in already immortalized oral squamous epithelial cells (OKF6-D1_dnp53). More interestingly, EGFR overexpression activated the PI3K/AKT pathway. This strongly suggested a role for telomerase in tumor progression in addition to just elongating telomeres and inferring an immortalized state. Therefore, we sought to identify the regulatory mechanisms involved in this activation of telomerase and in vitro transformation induced by EGFR. In the present study we demonstrate that telomerase expression and activity are induced through both direct phosphorylation of hTERT by phospho-AKT as well as PI3K-dependent transcriptional regulation involving Hif1-alpha as a key transcription factor. Furthermore, EGFR overexpression enhanced cell cycle progression and proliferation via phosphorylation and translocation of p21. Whereas immortalization was induced by ALT, in vitro transformation was associated with telomerase activation, supporting an additional role for telomerase in tumor progression besides elongating telomeres.
端粒酶在永生化和恶性转化中发挥着重要作用,是人类癌症发展的关键步骤。在口腔食管癌变的细胞模型中,端粒酶的激活不是通过非重组性端粒延长(ALT),而是通过端粒的重组性延长来实现永生化,从而重现了人类疾病。在这个逐步的模型中,额外过表达的 EGFR 导致体外转化和端粒酶的激活,已经永生化的口腔鳞状上皮细胞(OKF6-D1_dnp53)的端粒均匀延长。更有趣的是,EGFR 的过表达激活了 PI3K/AKT 通路。这强烈表明端粒酶在肿瘤进展中除了延长端粒之外还有作用,并推断出永生化状态。因此,我们试图确定 EGFR 诱导的端粒酶激活和体外转化涉及的调节机制。在本研究中,我们证明端粒酶的表达和活性通过磷酸化 AKT 直接磷酸化 hTERT 以及 PI3K 依赖性转录调节来诱导,其中 Hif1-α 作为关键转录因子参与。此外,EGFR 的过表达通过磷酸化和易位 p21 促进细胞周期进程和增殖。虽然 ALT 诱导了永生化,但体外转化与端粒酶的激活有关,这支持了端粒酶在肿瘤进展中除了延长端粒之外还有其他作用。