Biswas Sayantanee, Emond Michelle R, Duy Phan Q, Hao Le T, Beattie Christine E, Jontes James D
Department of Neuroscience, Molecular, Cellular and Developmental Biology Graduate Program, Ohio State University Medical Center, Columbus, OH 43210.
Mol Biol Cell. 2014 Mar;25(5):633-42. doi: 10.1091/mbc.E13-08-0475. Epub 2013 Dec 26.
The proper assembly of neural circuits during development requires the precise control of axon outgrowth, guidance, and arborization. Although the protocadherin family of cell surface receptors is widely hypothesized to participate in neural circuit assembly, their specific roles in neuronal development remain largely unknown. Here we demonstrate that zebrafish pcdh18b is involved in regulating axon arborization in primary motoneurons. Although axon outgrowth and elongation appear normal, antisense morpholino knockdown of pcdh18b results in dose-dependent axon branching defects in caudal primary motoneurons. Cell transplantation experiments show that this effect is cell autonomous. Pcdh18b interacts with Nap1, a core component of the WAVE complex, through its intracellular domain, suggesting a role in the control of actin assembly. Like that of Pcdh18b, depletion of Nap1 results in reduced branching of motor axons. Time-lapse imaging and quantitative analysis of axon dynamics indicate that both Pcdh18b and Nap1 regulate axon arborization by affecting the density of filopodia along the shaft of the extending axon.
神经回路在发育过程中的正确组装需要对轴突生长、导向和分支进行精确控制。尽管细胞表面受体原钙黏蛋白家族被广泛认为参与神经回路组装,但其在神经元发育中的具体作用仍 largely 未知。在这里,我们证明斑马鱼 pcdh18b 参与调节初级运动神经元的轴突分支。尽管轴突生长和伸长看起来正常,但 pcdh18b 的反义吗啉代敲低导致尾侧初级运动神经元中剂量依赖性的轴突分支缺陷。细胞移植实验表明这种效应是细胞自主的。Pcdh18b 通过其细胞内结构域与 WAVE 复合体的核心成分 Nap1 相互作用,提示其在肌动蛋白组装控制中的作用。与 Pcdh18b 一样,Nap1 的缺失导致运动轴突分支减少。延时成像和轴突动力学的定量分析表明,Pcdh18b 和 Nap1 都通过影响沿延伸轴突轴的丝状伪足密度来调节轴突分支。