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TOR and ageing: a complex pathway for a complex process

机译:TOR和老化:复杂过程的复杂途径

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摘要

Studies in invertebrate model organisms have led to a wealth of knowledge concerning the ageing process. But which of these discoveries will apply to ageing in humans? Recently, an assessment of the degree of conservation of ageing pathways between two of the leading invertebrate model organisms, Saccharomyces cerevisiae and Caenorhabditis elegans, was completed. The results (i) quantitatively indicated that pathways were conserved between evolutionarily disparate invertebrate species and (ii) emphasized the importance of the TOR kinase pathway in ageing. With recent findings that deletion of the mTOR substrate S6K1 or exposure of mice to the mTOR inhibitor rapamycin result in lifespan extension, mTOR signalling has become a major focus of ageing research. Here, we address downstream targets of mTOR signalling and their possible links to ageing. We also briefly cover other ageing genes identified by comparing worms and yeast, addressing the likelihood that their mammalian counterparts will affect longevity.
机译:对无脊椎动物模型生物的研究导致了有关衰老过程的大量知识。但是,这些发现中的哪些将适用于人类衰老?最近,完成了对两种主要的无脊椎动物模型生物啤酒酵母和秀丽隐杆线虫之间的衰老途径的保守程度的评估。结果(i)定量表明进化上不同的无脊椎动物物种之间的途径是保守的,并且(ii)强调了TOR激酶途径在衰老中的重要性。随着最近发现mTOR底物S6K1缺失或小鼠暴露于mTOR抑制剂雷帕霉素导致寿命延长,mTOR信号已成为衰老研究的主要焦点。在这里,我们解决了mTOR信号的下游目标及其可能与衰老的联系。我们还简要介绍了通过比较蠕虫和酵母菌鉴定出的其他衰老基因,从而解决了它们的哺乳动物对应基因会影响寿命的可能性。

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