一个由cadherin介导的相互作用网络使生长两极化,以确定向特异性的特定性
Tina Schwabe1, Helen Neuert, Thomas R Clandinin
1Department of Neurobiology, Stanford University, Stanford, CA 94305, USA.
Cell
|July 23, 2013
概括
多虫的光受体轴突使用多余的细胞粘附分子N-cadherin和Flamingo来引导它们的生长. 这确保了通过粘合相互作用网络精确地连接视觉系统.
科学领域:
- 神经科学是一个神经科学.
- 发育生物学 发展生物学
- 细胞生物学 细胞生物学
背景情况:
- 神经元生长可以在复杂的环境中寻找突触伙伴.
- 粘合线索指导生长的运动,但整合机制仍然不清楚.
研究的目的:
- 研究Drosophila中的光受体生长如何选择突触合作伙伴.
- 阐明N-cadherin和Flamingo在指导光受体轴突向中的作用.
主要方法:
- 使用Drosophila视觉系统作为模型.
- 检查了古典阴素 (N-阴素) 和非典型阴素 (Flamingo) 的功能.
- 分析了生长状类动物的分布和干素的亚细胞局部.
主要成果:
- N-cadherin和Flamingo的作用是冗余的,以引导光受体轴突向.
- 这些分子倾向于生长状类动物,在接触之前将它们两极分化到突触目标.
- 卡德林定位到不同的域,形成跨多个生长的粘合性相互作用网络.
结论:
- 由N-cadherin和Flamingo介导的冗余粘合相互作用确保视觉系统的高保真电线.
- 这种网络机制表明了神经元连接的一般原则.
- 精确的突触合作伙伴选择是通过集成的粘合线索实现的.
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