Kiecker Clemens, Graham Anthony, Logan Malcolm
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.
J Dev Biol. 2016 Dec 10;4(4):36. doi: 10.3390/jdb4040036.
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.
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。