Nicholson Joshua M, Cimini Daniela
Department of Biological Sciences and Virginia Bioinformatics Institute, Virginia Tech, Blacksburg, VA, USA.
Int Rev Cell Mol Biol. 2015;315:299-317. doi: 10.1016/bs.ircmb.2014.11.002. Epub 2015 Feb 7.
Aneuploidy is widely acknowledged as a leading cause of miscarriage and birth defects in humans, and is generally known to be deleterious to the survival of individual cells. However, aneuploidy is also ubiquitous in cancer and is found to arise as an adaptive response in certain contexts. This dichotomy of aneuploidy has attracted the interest of researchers for over a century, but many studies have reached conflicting conclusions. The emergence of new technology has allowed scientists to revisit the aneuploidy problem and has fueled a number of recent studies aimed at understanding the effects of aneuploidy on cell physiology. Here, we review these studies, in light of previous observations and knowledge, specifically focusing on the effects of aneuploidy on cellular homeostasis, chromosome stability, and adaptation.
非整倍体被广泛认为是人类流产和出生缺陷的主要原因,并且通常已知对单个细胞的存活有害。然而,非整倍体在癌症中也很普遍,并被发现在某些情况下作为一种适应性反应出现。这种非整倍体的二分法在一个多世纪以来一直吸引着研究人员的兴趣,但许多研究得出了相互矛盾的结论。新技术的出现使科学家能够重新审视非整倍体问题,并推动了最近一些旨在了解非整倍体对细胞生理学影响的研究。在此,我们根据先前的观察和知识对这些研究进行综述,特别关注非整倍体对细胞内稳态、染色体稳定性和适应性的影响。