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Consequences of telomere shortening during lifespan

机译:寿命中端粒缩短的后果

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Telomerase expression is restricted in human cells and so telomeres shorten throughout our lives, providing a tumour suppressor mechanism that limits cell proliferation. As a trade-off, continuous telomere erosion results in replicative senescence and contributes to ageing. Recently, telomerase therapies were proposed as a valid approach to rescue degenerative phenotypes caused by telomere dysfunction. However, systemic effects initiated by short telomeres may prove dominant in limiting tissue renewal in the whole organism. Most of our knowledge of telomere biology derives from mouse models that do not rely on telomere exhaustion for controlling cell proliferation and tissue homeostasis. In order to understand the impact of telomere shortening in natural ageing, we need to investigate animal models that, like humans, have evolved to have telomere length as a cell division clock.
机译:端粒酶在人类细胞中的表达受到限制,因此端粒在我们的一生中都会缩短,从而提供了一种抑制细胞增殖的肿瘤抑制机制。作为一种折衷,连续的端粒腐蚀会导致复制衰老并有助于衰老。近来,端粒酶疗法被提出作为挽救由端粒功能障碍引起的变性表型的有效方法。但是,由端粒短促发的全身作用可能在限制整个生物体的组织更新中占主导地位。我们对端粒生物学的大多数了解都来自于不依赖端粒耗尽来控制细胞增殖和组织稳态的小鼠模型。为了了解端粒缩短对自然衰老的影响,我们需要研究像人类一样已经进化为具有端粒长度作为细胞分裂时钟的动物模型。

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