Laws Kaitlin M, Bashaw Greg J
Department of Neuroscience, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Current address: Department of Biology, Randolph-Macon College, Ashland, VA 23005, USA.
Nat Sci (Weinh). 2022 Oct;2(4). doi: 10.1002/ntls.20220021. Epub 2022 Oct 2.
Classical axon guidance ligands and their neuronal receptors were first identified due to their fundamental roles in regulating connectivity in the developing nervous system. Since their initial discovery, it has become clear that these signaling molecules play important roles in the development of a broad array of tissue and organ systems across phylogeny. In addition to these diverse developmental roles, there is a growing appreciation that guidance signaling pathways have important functions in adult organisms, including the regulation of tissue integrity and homeostasis. These roles in adult organisms include both tissue-intrinsic activities of guidance molecules, as well as systemic effects on tissue maintenance and function mediated by the nervous and vascular systems. While many of these adult functions depend on mechanisms that mirror developmental activities, such as regulating adhesion and cell motility, there are also examples of adult roles that may reflect signaling activities that are distinct from known developmental mechanisms, including the contributions of guidance signaling pathways to lineage commitment in the intestinal epithelium and bone remodeling in vertebrates. In this review, we highlight studies of guidance receptors and their ligands in adult tissues outside of the nervous system, focusing on experimental contexts. Together, these studies lay the groundwork for future investigation into the conserved and tissue-specific mechanisms of guidance receptor signaling in adult tissues.
经典的轴突导向配体及其神经元受体最初是因其在调节发育中的神经系统连接性方面的基本作用而被发现的。自它们首次被发现以来,很明显这些信号分子在整个系统发育过程中广泛的组织和器官系统发育中发挥着重要作用。除了这些多样的发育作用外,人们越来越认识到导向信号通路在成年生物体中具有重要功能,包括调节组织完整性和内环境稳定。这些在成年生物体中的作用既包括导向分子的组织内在活性,也包括神经和血管系统介导的对组织维持和功能的系统性影响。虽然这些成年功能中的许多依赖于类似于发育活动的机制,如调节黏附和细胞运动,但也有一些成年作用的例子可能反映了与已知发育机制不同的信号活动,包括导向信号通路对肠道上皮细胞谱系定向和脊椎动物骨骼重塑的贡献。在这篇综述中,我们重点介绍了在神经系统之外的成年组织中对导向受体及其配体的研究,重点关注实验背景。这些研究共同为未来研究成年组织中导向受体信号传导的保守和组织特异性机制奠定了基础。