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脊椎动物中细胞对刺猬信号通路的不同反应——感受态的作用是什么?

Differential Cellular Responses to Hedgehog Signalling in Vertebrates-What is the Role of Competence?

作者信息

Kiecker Clemens, Graham Anthony, Logan Malcolm

机构信息

Department of Developmental Neurobiology, King's College London, Hodgkin Building, Guy's Hospital Campus, London SE1 1UL, UK.

Randall Division of Cell & Molecular Biophysics, King's College London, Hodgkin Building, Guy's Hospital Campus, London SE1 1UL, UK.

出版信息

J Dev Biol. 2016 Dec 10;4(4):36. doi: 10.3390/jdb4040036.

Abstract

A surprisingly small number of signalling pathways generate a plethora of cellular responses ranging from the acquisition of multiple cell fates to proliferation, differentiation, morphogenesis and cell death. These diverse responses may be due to the dose-dependent activities of signalling factors, or to intrinsic differences in the response of cells to a given signal-a phenomenon called . In this review, we focus on temporal and spatial differences in competence for Hedgehog (HH) signalling, a signalling pathway that is reiteratively employed in embryos and adult organisms. We discuss the upstream signals and mechanisms that may establish differential competence for HHs in a range of different tissues. We argue that the changing competence for HH signalling provides a four-dimensional framework for the interpretation of the signal that is essential for the emergence of functional anatomy. A number of diseases-including several types of cancer-are caused by malfunctions of the HH pathway. A better understanding of what provides differential competence for this signal may reveal HH-related disease mechanisms and equip us with more specific tools to manipulate HH signalling in the clinic.

摘要

数量惊人少的信号通路却能产生大量的细胞反应,这些反应涵盖了从获得多种细胞命运到增殖、分化、形态发生和细胞死亡等各个方面。这些多样的反应可能归因于信号因子的剂量依赖性活性,或者是细胞对给定信号反应的内在差异——这种现象称为 。在本综述中,我们聚焦于刺猬索尼克(HH)信号通路在能力上的时空差异,该信号通路在胚胎和成年生物体中被反复利用。我们讨论了可能在一系列不同组织中建立对HH信号不同反应能力的上游信号和机制。我们认为,HH信号通路反应能力的变化为信号解读提供了一个四维框架,这对于功能解剖学的形成至关重要。包括几种类型癌症在内的许多疾病都是由HH通路功能异常引起的。更好地理解是什么赋予了对该信号的不同反应能力,可能会揭示与HH相关的疾病机制,并为我们在临床上操控HH信号通路提供更具特异性的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cbb/5831800/0297023afcb7/jdb-04-00036-g001.jpg

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