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刺猬信号通路:从基础研究到临床应用

Hedgehog signaling: From basic research to clinical applications.

作者信息

Yao Erica, Chuang Pao-Tien

机构信息

Cardiovascular Research Institute, University of California, San Francisco, CA, USA.

Cardiovascular Research Institute, University of California, San Francisco, CA, USA.

出版信息

J Formos Med Assoc. 2015 Jul;114(7):569-76. doi: 10.1016/j.jfma.2015.01.005. Epub 2015 Feb 17.

Abstract

Studies of the major signaling pathways have revealed a connection between development, regeneration, and cancer, highlighting common signaling networks in these processes. The Hedgehog (Hh) pathway plays a central role in the development of most tissues and organs in mammals. Hh signaling is also required for tissue homeostasis and regeneration in adults, while perturbed Hh signaling is associated with human cancers. A fundamental understanding of Hh signaling will not only enhance our knowledge of how the embryos are patterned but also provide tools to treat diseases related to aberrant Hh signaling. Studies have yielded a basic framework of Hh signaling, which establishes the foundation for addressing unresolved issues of Hh signaling. A detailed characterization of the biochemical interactions between Hh components will help explain the production of graded Hh responses required for tissue patterning. Additional cell biological and genetic studies will offer new insight into the role of Hh signaling in homeostasis and regeneration. Finally, drugs that are capable of manipulating the Hh pathway can be used to treat human diseases caused by disrupted Hh signaling. These investigations will serve as a paradigm for studying signal transduction/integration in homeostasis and disease, and for translating discovery from bench to bedside.

摘要

对主要信号通路的研究揭示了发育、再生和癌症之间的联系,突显了这些过程中常见的信号网络。刺猬索尼克(Hh)通路在哺乳动物大多数组织和器官的发育中起核心作用。Hh信号传导对于成体组织的稳态和再生也是必需的,而Hh信号传导紊乱与人类癌症相关。对Hh信号传导的基本理解不仅会增进我们对胚胎如何形成模式的认识,还会提供治疗与异常Hh信号传导相关疾病的工具。研究已经产生了Hh信号传导的基本框架,为解决Hh信号传导未解决的问题奠定了基础。对Hh组分之间生化相互作用的详细表征将有助于解释组织模式形成所需的分级Hh反应的产生。更多的细胞生物学和遗传学研究将为Hh信号传导在稳态和再生中的作用提供新的见解。最后,能够操纵Hh通路的药物可用于治疗由Hh信号传导中断引起的人类疾病。这些研究将成为研究稳态和疾病中的信号转导/整合以及将发现从实验室转化到临床的范例。

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