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首页> 外文期刊>Nature reviews. Endocrinology >Telomerase and the endocrine system.
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Telomerase and the endocrine system.

机译:端粒酶和内分泌系统。

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Telomeres are nucleoprotein complexes located at the ends of chromosomes that have a critical role in the maintenance of chromosomal integrity. This involvement is based on complex secondary and tertiary structures that rely on DNA-DNA, DNA-protein and protein-protein interactions. De novo synthesis and maintenance of telomere repeats is controlled by telomerase, a specialized complex that consists of a telomerase RNA component and a protein component-telomerase reverse transcriptase. When telomerase is silent (its default state in differentiated somatic cells), chromosomes shorten with every cell division, thus limiting the lifespan of the cells (the process of senescence) and preventing unlimited cell proliferation, which might eventually lead to the development of cancer. During this process, occasionally, a cell can activate telomerase, which stabilizes short telomeres and enables immortalization-a process essential for malignant transformation. Thus, although telomere erosion is a barrier to malignant progression, paradoxically, in certain circumstances it might also trigger tumorigenesis. A number of studies have demonstrated unequivocally that reactivation of telomerase in the presence of short telomeres is one of the most common features of human cancers, including those of the endocrine system.
机译:端粒是位于染色体末端的核蛋白复合物,在维持染色体完整性中起关键作用。这种参与是基于复杂的二级和三级结构,这些结构依赖于DNA-DNA,DNA-蛋白质和蛋白质-蛋白质相互作用。端粒重复序列的从头合成和维持是由端粒酶控制的,端粒酶是一种特殊的复合物,它由端粒酶RNA组分和蛋白质组分-端粒酶逆转录酶组成。当端粒酶沉默时(在分化的体细胞中它的默认状态),染色体随着每个细胞分裂而缩短,从而限制了细胞的寿命(衰老过程)并阻止了无限的细胞增殖,最终可能导致癌症的发展。在此过程中,有时细胞可以激活端粒酶,从而稳定短端粒并实现永生化,这是恶性转化必不可少的过程。因此,尽管端粒侵蚀是恶性进展的障碍,但自相矛盾的是,在某些情况下,它也可能触发肿瘤发生。大量研究明确表明,在存在端粒短的情况下,端粒酶的重新激活是人类癌症(包括内分泌系统)的最常见特征之一。

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