Pasterkamp R Jeroen, Peschon Jacques J, Spriggs Melanie K, Kolodkin Alex L
Department of Neuroscience, The Johns Hopkins University School of Medicine, 725 North Wolfe Street, Baltimore, Maryland 21205, USA.
Nature. 2003 Jul 24;424(6947):398-405. doi: 10.1038/nature01790.
Striking parallels exist between immune and nervous system cellular signalling mechanisms. Molecules originally shown to be critical for immune responses also serve neuronal functions, and similarly neural guidance cues can modulate immune function. We show here that semaphorin 7A (Sema7A), a membrane-anchored member of the semaphorin family of guidance proteins previously known for its immunomodulatory effects, can also mediate neuronal functions. Unlike many other semaphorins, which act as repulsive guidance cues, Sema7A enhances central and peripheral axon growth and is required for proper axon tract formation during embryonic development. Unexpectedly, Sema7A enhancement of axon outgrowth requires integrin receptors and activation of MAPK signalling pathways. These findings define a previously unknown biological function for semaphorins, identify an unexpected role for integrins and integrin-dependent intracellular signalling in mediating semaphorin responses, and provide a framework for understanding and interfering with Sema7A function in both immune and nervous systems.
免疫和神经系统的细胞信号传导机制之间存在显著的相似之处。最初被证明对免疫反应至关重要的分子也具有神经元功能,同样,神经导向信号也可以调节免疫功能。我们在此表明,信号素7A(Sema7A)是信号素家族的一种膜锚定成员,该家族的导向蛋白此前因其免疫调节作用而闻名,它也可以介导神经元功能。与许多其他作为排斥性导向信号的信号素不同,Sema7A可促进中枢和外周轴突生长,并且是胚胎发育过程中轴突束正常形成所必需的。出乎意料的是,Sema7A对轴突生长的促进作用需要整合素受体和MAPK信号通路的激活。这些发现定义了信号素以前未知的生物学功能,确定了整合素和整合素依赖性细胞内信号传导在介导信号素反应中的意外作用,并为理解和干扰Sema7A在免疫和神经系统中的功能提供了一个框架。