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GLI转录因子:致癌性刺猬信号通路的介质

GLI transcription factors: mediators of oncogenic Hedgehog signalling.

作者信息

Kasper Maria, Regl Gerhard, Frischauf Anna-Maria, Aberger Fritz

机构信息

Department of Molecular Biology, University of Salzburg, Hellbrunnerstrasse 34, A-5020 Salzburg, Austria.

出版信息

Eur J Cancer. 2006 Mar;42(4):437-45. doi: 10.1016/j.ejca.2005.08.039. Epub 2006 Jan 10.

Abstract

The current concept of tumourigenesis holds that cancer results from the progressive acquisition of mutations that endow affected cells with selective growth advantages by activating multiple processes including intrinsic mitogenic and pro-survival pathways. Constitutive activation of the Hedgehog (HH)/GLI signalling cascade has recently been implicated in the growth of a number of human malignancies ranging from semi-malignant tumours of the skin to highly aggressive cancers of the brain, lung, pancreas and prostate. This review focuses on the role of the GLI zinc finger transcription factors, which mediate Hedgehog signalling at the distal end of the pathway. We summarise recent data on the mechanisms by which latent GLI proteins are activated in response to stimulation of Hedgehog signalling. Based on the identification of a growing number of direct GLI target genes, we propose that HH-driven tumourigenesis relies on multiple cellular processes such as promotion of G1/S phase progression, enhancement of cell survival by providing anti-apoptotic cues, increase in metastatic potential of Hedgehog responsive cells, and activation of potential tumour stem cells. In view of the critical role of GLI genes in Hedgehog-associated cancers, strategies that aim at interfering with GLI function are likely to represent efficient approaches in future targeted cancer therapy.

摘要

当前的肿瘤发生概念认为,癌症是由于细胞逐渐获得突变,这些突变通过激活包括内在促有丝分裂和促生存途径在内的多种过程,赋予受影响细胞选择性生长优势。最近发现,刺猬信号通路(Hedgehog,HH)/GLI信号级联的组成性激活与多种人类恶性肿瘤的生长有关,这些肿瘤包括从皮肤的半恶性肿瘤到脑、肺、胰腺和前列腺的高度侵袭性癌症。本综述聚焦于GLI锌指转录因子的作用,其在该信号通路的远端介导刺猬信号。我们总结了近期关于潜在GLI蛋白在响应刺猬信号刺激时被激活的机制的数据。基于越来越多直接的GLI靶基因的鉴定,我们提出HH驱动的肿瘤发生依赖于多种细胞过程,如促进G1/S期进程、通过提供抗凋亡信号增强细胞存活、增加刺猬信号响应细胞的转移潜能以及激活潜在的肿瘤干细胞。鉴于GLI基因在与刺猬信号相关癌症中的关键作用,旨在干扰GLI功能的策略可能是未来靶向癌症治疗的有效方法。

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