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向坏人宣判死刑:通过Apo2L/TRAIL靶向治疗癌症。

Death to the bad guys: targeting cancer via Apo2L/TRAIL.

作者信息

Bouralexis S, Findlay D M, Evdokiou A

机构信息

St Vincent's Institute of Medical Research, Fitzroy, 3065, Victoria, Australia.

出版信息

Apoptosis. 2005 Jan;10(1):35-51. doi: 10.1007/s10495-005-6060-0.

Abstract

All higher organisms consist of an ordered society of individual cells that must communicate to maintain and regulate their functions. This is achieved through a complex but highly regulated network of hormones, chemical mediators, chemokines and other cytokines, acting as ligands for intra or extra-cellular receptors. Ligands and receptors of the tumor necrosis factor (TNF) superfamilies are examples of signal transducers, whose integrated actions influence the development, homeostasis and adaptive responses of many cells and tissue types. Apo2L/TRAIL is one of several members of the tumour necrosis factor superfamily that induce apoptosis through the engagement of death receptors. Apo2L/TRAIL interacts with an unusually complex receptor system, which in humans comprises two death receptors and three decoy receptors. This molecule has received considerable attention recently because of the finding that many cancer cell types are sensitive to Apo2L/TRAIL-induced apoptosis, while most normal cells appear to be resistant to this action of Apo2L/TRAIL. In this review, we specifically emphasise on the actions of Apo2L/TRAIL with respect to its apoptotic signaling pathways and summarise what is known about its physiological role. The potential therapeutic usefulness of Apo2L/TRAIL, especially in combination with chemotherapeutic agents, is also discussed in some detail.

摘要

所有高等生物均由单个细胞组成的有序群落构成,这些细胞必须进行通讯以维持和调节其功能。这是通过一个复杂但高度调控的激素、化学介质、趋化因子和其他细胞因子网络来实现的,这些物质作为细胞内或细胞外受体的配体发挥作用。肿瘤坏死因子(TNF)超家族的配体和受体就是信号转导分子的例子,它们的综合作用影响许多细胞和组织类型的发育、稳态和适应性反应。Apo2L/TRAIL是肿瘤坏死因子超家族的几个成员之一,它通过与死亡受体结合来诱导细胞凋亡。Apo2L/TRAIL与一个异常复杂的受体系统相互作用,在人类中该系统包括两个死亡受体和三个诱饵受体。由于发现许多癌细胞类型对Apo2L/TRAIL诱导的细胞凋亡敏感,而大多数正常细胞似乎对Apo2L/TRAIL的这种作用具有抗性,该分子最近受到了相当多的关注。在这篇综述中,我们特别强调Apo2L/TRAIL在其凋亡信号通路方面的作用,并总结其生理作用的已知情况。我们还将详细讨论Apo2L/TRAIL的潜在治疗用途,尤其是与化疗药物联合使用时的情况。

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