Laboratory of Systems Neurobiology and Medicine, Division of Biological Science, Nara Institute of Science and Technology, Ikoma, Nara 630-0192, Japan.
Department of Developmental and Regenerative Biology, Graduate School of Medical Sciences, Nagoya City University, Nagoya 467-8601, Japan.
Cell Rep. 2018 Oct 16;25(3):624-639.e6. doi: 10.1016/j.celrep.2018.09.068.
As an essential step for brain morphogenesis, neurons migrate via mechanical interactions with components of their environment such as neighboring cells and the extracellular matrix. However, the molecular mechanism by which neurons exert forces on their environment during migration remains poorly understood. Here, we show that shootin1b is expressed in migrating mouse olfactory interneurons and accumulates at their leading process growth cone. We demonstrate that shootin1b, by binding to cortactin and L1-CAM, couples F-actin retrograde flow and the adhesive substrate as a clutch molecule. Shootin1b-mediated clutch coupling at the growth cone generates traction force on the substrate, thereby promoting leading process extension and subsequent somal translocation of olfactory interneurons. Furthermore, loss of shootin1 causes abnormal positioning of the interneurons and dysgenesis of the olfactory bulb. Our findings indicate that shootin1b plays a key role in force-driven leading process extension, which propels the migration of olfactory interneurons during olfactory bulb formation.
作为脑形态发生的重要步骤,神经元通过与环境成分(如相邻细胞和细胞外基质)的机械相互作用进行迁移。然而,神经元在迁移过程中对其环境施加力的分子机制仍知之甚少。在这里,我们表明 shootin1b 在迁移的小鼠嗅觉中间神经元中表达,并积累在其前导过程生长锥。我们证明 shootin1b 通过与 cortactin 和 L1-CAM 结合,将 F-actin 逆行流和粘附基板作为离合器分子连接起来。生长锥处的 shootin1b 介导的离合器偶联在基板上产生牵引力,从而促进前导过程的延伸和随后嗅觉中间神经元的体部转位。此外,shootin1 的缺失会导致中间神经元的异常定位和嗅球的发育不良。我们的发现表明 shootin1b 在力驱动的前导过程延伸中发挥关键作用,推动了嗅觉中间神经元在嗅球形成过程中的迁移。