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凋亡诱导中的微管:它们是必需的吗?

Microtubules in apoptosis induction: are they necessary?

作者信息

Estève M-A, Carré M, Braguer D

机构信息

INSERM U911, Centre de Recherche en Oncologie biologique et Oncopharmacologie, Aix-Marseille University, Marseille, France.

出版信息

Curr Cancer Drug Targets. 2007 Dec;7(8):713-29. doi: 10.2174/156800907783220480.

Abstract

Microtubule-Targeting Agents (MTAs) constitute a class of drugs largely used in cancer treatment. Among them, both taxanes and Vinca-alkaloids are known to inhibit cancer cell proliferation by inducing cell cycle arrest and subsequent apoptosis. These agents modify the cytoskeleton by affecting the tubulin/microtubule system. In cancer cells, both classes suppress microtubule dynamics through inhibition of microtubule dynamic instability and treadmilling, and commonly induce diverse signals responsible for cell death initiation and execution via the mitochondrial intrinsic pathway. However, links between microtubule network disturbance and the involvement of mitochondria in apoptosis are not obvious, and one may think that they could be independent. Nevertheless, several intracellular proteins could connect microtubules and the apoptotic machinery. The aim of the present review is to provide elements that could answer to the question: is microtubule disruption dispensable for MTA-induced apoptosis? The first section is focused on the mechanisms responsible for the MTA-mediated apoptosis. Then, links between cell cycle regulators and apoptosis are underlined since MTA induce cell cycle arrest by inhibiting microtubules. In the third part, the potential involvement of microtubule-sequestered and/or -transported proteins in apoptotic signalisation is discussed. Lastly, the possible role of the tubulin/microtubule system in direct effects of MTAs on mitochondria is summarized. Thus, it becomes clear that microtubule network and apoptosis are deeply linked in MTA effectiveness, through a cascade of cellular events. It could lead to identification of new biomarkers of MTA effectiveness, that could improve combinatorial therapy with MTAs and provide crucial arms to circumvent resistance of cancer cells.

摘要

微管靶向剂(MTAs)是一类广泛用于癌症治疗的药物。其中,紫杉烷类和长春花生物碱都已知通过诱导细胞周期停滞和随后的凋亡来抑制癌细胞增殖。这些药物通过影响微管蛋白/微管系统来改变细胞骨架。在癌细胞中,这两类药物都通过抑制微管动态不稳定性和踏车行为来抑制微管动力学,并通常通过线粒体内在途径诱导负责细胞死亡起始和执行的多种信号。然而,微管网络紊乱与线粒体参与凋亡之间的联系并不明显,人们可能会认为它们是独立的。尽管如此,几种细胞内蛋白质可能会连接微管和凋亡机制。本综述的目的是提供一些要素,以回答以下问题:微管破坏对于MTA诱导的凋亡是否是可有可无的?第一部分重点介绍了MTA介导的凋亡的机制。然后,强调了细胞周期调节因子与凋亡之间的联系,因为MTA通过抑制微管来诱导细胞周期停滞。在第三部分中,讨论了微管隔离和/或运输的蛋白质在凋亡信号传导中的潜在作用。最后,总结了微管蛋白/微管系统在MTA对线粒体的直接作用中的可能作用。因此,很明显,通过一系列细胞事件,微管网络与凋亡在MTA的有效性中有着深刻的联系。这可能会导致识别MTA有效性的新生物标志物,从而改善与MTA的联合治疗,并为规避癌细胞的耐药性提供关键手段。

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