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端粒酶促进有效的细胞周期动力学,并赋予端粒酶阴性转化的人类细胞生长优势。

Telomerase promotes efficient cell cycle kinetics and confers growth advantage to telomerase-negative transformed human cells.

机构信息

Faculty of Pharmaceutical Sciences, University of British Columbia, Vancouver, BC, Canada.

出版信息

Oncogene. 2012 Feb 23;31(8):954-65. doi: 10.1038/onc.2011.292. Epub 2011 Jul 11.

Abstract

Constitutive telomerase activity maintains telomere length and confers immortal phenotypes to human cancers. The prevalence of telomerase, rather than a homologous recombination-based mechanism, in telomere length maintenance suggests that telomerase also has auxiliary roles in tumorigenesis. Here, we investigate growth advantages provided by the telomerase enzyme in oncogene-transformed human cells that do not require telomerase activity for telomere length control. Our data suggest that in oncogene-transformed cells, telomerase activity accelerates cell growth kinetics in a cell cycle phase-specific manner and promotes anchorage-independent growth. Coculture experiments demonstrated that this growth advantage conferred by telomerase activity is not due to increased cellular cross-talk. Growth advantages provided by telomerase required all functional aspects of the enzyme. Dissociation-of-activity-in-telomerase mutants and other functionally defective versions of telomerase were unable to promote oncogene-transformed cell growth, suggesting that canonical telomerase activities may be involved. We conclude that telomerase provides advantages to oncogene-transformed human cells, thereby supporting the development of telomerase-based anticancer chemotherapies targeting these growth-promoting effects.

摘要

端粒酶的组成型活性维持端粒长度,并赋予人类癌症永生化表型。端粒长度维持中端粒酶的普遍性,而不是同源重组为基础的机制,表明端粒酶在肿瘤发生中也具有辅助作用。在这里,我们研究了端粒酶酶在不需要端粒酶活性控制端粒长度的致癌基因转化的人类细胞中提供的生长优势。我们的数据表明,在致癌基因转化的细胞中,端粒酶活性以细胞周期相特异性的方式加速细胞生长动力学,并促进锚定独立生长。共培养实验表明,端粒酶活性提供的这种生长优势不是由于细胞间通讯增加所致。端粒酶活性提供的生长优势需要酶的所有功能方面。活性分离的端粒酶突变体和其他功能缺陷的端粒酶版本均不能促进致癌基因转化细胞的生长,这表明典型的端粒酶活性可能参与其中。我们得出结论,端粒酶为致癌基因转化的人类细胞提供了优势,从而支持基于端粒酶的抗癌化疗的发展,以靶向这些促进生长的作用。

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