Centre for Developmental Neurobiology, King's College London, London, United Kingdom.
Department of Biology, Virginia Commonwealth University, Richmond, United States.
Elife. 2020 Oct 1;9:e56725. doi: 10.7554/eLife.56725.
In the vertebrate central nervous system, groups of functionally related neurons, including cranial motor neurons of the brainstem, are frequently organised as nuclei. The molecular mechanisms governing the emergence of nuclear topography and circuit function are poorly understood. Here we investigate the role of cadherin-mediated adhesion in the development of zebrafish ocular motor (sub)nuclei. We find that developing ocular motor (sub)nuclei differentially express classical cadherins. Perturbing cadherin function in these neurons results in distinct defects in neuronal positioning, including scattering of dorsal cells and defective contralateral migration of ventral subnuclei. In addition, we show that cadherin-mediated interactions between adjacent subnuclei are critical for subnucleus position. We also find that disrupting cadherin adhesivity in dorsal oculomotor neurons impairs the larval optokinetic reflex, suggesting that neuronal clustering is important for co-ordinating circuit function. Our findings reveal that cadherins regulate distinct aspects of cranial motor neuron positioning and establish subnuclear topography and motor function.
在脊椎动物中枢神经系统中,功能相关的神经元群,包括脑干颅神经运动神经元,通常被组织为核。然而,调控核拓扑结构和回路功能出现的分子机制仍知之甚少。在这里,我们研究了钙黏蛋白介导的黏附在斑马鱼眼球运动(亚)核发育中的作用。我们发现,发育中的眼球运动(亚)核差异表达经典钙黏蛋白。干扰这些神经元中的钙黏蛋白功能会导致神经元定位的明显缺陷,包括背侧细胞的分散和腹侧亚核的对侧迁移缺陷。此外,我们表明,相邻亚核之间钙黏蛋白介导的相互作用对于亚核位置至关重要。我们还发现,在背侧眼球运动神经元中破坏钙黏蛋白黏附性会损害幼虫的光偏斜反射,这表明神经元聚类对于协调回路功能很重要。我们的研究结果表明,钙黏蛋白调节颅神经运动神经元定位的不同方面,并建立了亚核拓扑结构和运动功能。