Tumour Suppressor Signalling Networks laboratory, UCL Cancer Institute, University College London, 72 Huntley Street, WC1E 6BT London, UK.
Clin Transl Med. 2014 Jul 10;3:22. doi: 10.1186/2001-1326-3-22. eCollection 2014.
The Hippo tumour suppressor pathway co-ordinates cell proliferation, cell death and cell differentiation to regulate tissue growth control. In mammals, a conserved core Hippo signalling module receives signal inputs on different levels to ensure the proper regulation of YAP/TAZ activities as transcriptional co-activators. While the core module members MST1/2, Salvador, LATS1/2 and MOB1 have been attributed tumour suppressive functions, YAP/TAZ have been mainly described to have oncogenic roles, although some reports provided evidence supporting growth suppressive roles of YAP/TAZ in certain cancer settings. Intriguingly, mammalian Hippo signalling is also implicated in non-cancer diseases and plays a role in tissue regeneration following injury. Cumulatively, these findings indicate that the pharmacological inhibition or activation of the Hippo pathway could be desirable depending on the disease context. In this review, we first summarise the functions of the mammalian Hippo pathway in tumour formation, and then discuss non-cancer diseases involving Hippo signalling core components with a specific focus on our current understanding of the non-cancer roles of MST1/2 and YAP/TAZ. In addition, the pros and cons of possible pharmacological interventions with Hippo signalling will be reviewed, with particular emphasis on anti-cancer drug development and regenerative medicine.
Hippo 肿瘤抑制途径协调细胞增殖、细胞死亡和细胞分化,以调节组织生长控制。在哺乳动物中,一个保守的核心 Hippo 信号模块在不同层面接收信号输入,以确保 YAP/TAZ 活性作为转录共激活因子的适当调节。虽然核心模块成员 MST1/2、Salvador、LATS1/2 和 MOB1 被赋予肿瘤抑制功能,但 YAP/TAZ 主要被描述为具有致癌作用,尽管一些报告提供了证据支持 YAP/TAZ 在某些癌症环境中具有生长抑制作用。有趣的是,哺乳动物 Hippo 信号也与非癌症疾病有关,并在损伤后组织再生中发挥作用。综上所述,这些发现表明 Hippo 途径的药理学抑制或激活可能取决于疾病的具体情况。在这篇综述中,我们首先总结了哺乳动物 Hippo 途径在肿瘤形成中的功能,然后讨论了涉及 Hippo 信号核心成分的非癌症疾病,并特别关注我们目前对 MST1/2 和 YAP/TAZ 的非癌症作用的理解。此外,还将回顾 Hippo 信号可能的药理学干预的优缺点,特别强调抗癌药物开发和再生医学。