Stoeckli E T
Institute of Zoology, University of Zurich, Winterthurerstrasse 190, 8057, Zurich, Switzerland,
Handb Exp Pharmacol. 2004(165):373-401. doi: 10.1007/978-3-540-68170-0_12.
Cell adhesion molecules of the immunoglobulin superfamily (IgSF CAMs) were discovered 25 years ago based on their role in cell-cell adhesion. Ever since, they have played a major role in developmental neuroscience research. The elucidation of IgSF CAM structure and function has been tightly linked to the establishment of new areas of research. Over the years, our view of the role of the IgSF CAMs has changed. First, they were thought to provide "specific glue" segregating subtypes of cells in the nervous system. Soon it became clear that IgSF CAMs can do much more. The focus shifted from simple adhesion to CAM-associated signaling that was shown to be involved in the promotion of axon growth and the regulation of cell migration. From there it was a small step to axon guidance, a field that has been given a lot of attention during the last decade. More recently, the involvement of IgSF CAMs in synapse formation and maturation has been discovered, although this last step in the formation of neural circuits was thought to be the domain of other families of cell adhesion molecules, such as the neuroligins, the neurexins, and the cadherins. Certainly, the most striking discovery in the context of IgSF CAMs has been the diversity of signaling mechanisms that are associated with them. The versatility of signals and their complexity make IgSF CAMs a perfect tool for brain development.
免疫球蛋白超家族细胞黏附分子(IgSF CAMs)于25年前基于其在细胞间黏附中的作用被发现。从那时起,它们在发育神经科学研究中发挥了重要作用。IgSF CAMs结构与功能的阐明与新研究领域的建立紧密相关。多年来,我们对IgSF CAMs作用的看法发生了变化。首先,它们被认为提供“特异性胶水”来分离神经系统中的细胞亚型。很快就清楚了,IgSF CAMs能发挥更多作用。重点从简单的黏附转移到与CAM相关的信号传导,已表明其参与促进轴突生长和调节细胞迁移。从那里到轴突导向只是一小步,而轴突导向是过去十年中备受关注的一个领域。最近,已发现IgSF CAMs参与突触形成和成熟,尽管神经回路形成的这最后一步曾被认为是其他细胞黏附分子家族的领域,如神经连接蛋白、神经突触素和钙黏蛋白。当然,在IgSF CAMs背景下最引人注目的发现是与它们相关的信号传导机制的多样性。信号的多功能性及其复杂性使IgSF CAMs成为大脑发育的完美工具。