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秀丽隐杆线虫生长锥迁移的遗传分析。

Genetic analysis of growth cone migrations in Caenorhabditis elegans.

作者信息

Merz D C, Culotti J G

机构信息

Samuel Lunenfeld Research Institute, Mount Sinai Hospital, and Department of Medical and Molecular Genetics, Faculty of Medicine, University of Toronto, Toronto, Canada M5G 1X5.

出版信息

J Neurobiol. 2000 Aug;44(2):281-8.

Abstract

Model organisms like Caenorhabditis elegans allow the study of growth cone motility and guidance in vivo. We are using circumferential axon guidance in C. elegans to study both the mechanisms of guidance and the interactions between different guidance systems in vivo. A genetic screen has identified suppressors of the specific axon guidance defects caused by ectopic expression of UNC-5, the repulsive receptor for the UNC-6/netrin guidance cue. These mutations identify eight genes whose products are required for the function of UNC-5 in these cells. In principle, the functions of some of these genes may involve unc-73, which encodes a multidomain, cytoplasmic protein that is an activator of the rac and rho GTPases. Loss of UNC-73 causes errors in axon guidance, and it is hypothesized that UNC-73 acts in multiple signaling pathways used by guidance receptors on the growth cone surface to regulate the underlying cytoskeleton. Here we summarize and discuss these recent developments that are advancing our understanding of growth cone signal transduction in vivo.

摘要

像秀丽隐杆线虫这样的模式生物能够在体内研究生长锥的运动性和导向性。我们正在利用秀丽隐杆线虫中的圆周轴突导向来研究体内导向机制以及不同导向系统之间的相互作用。一项遗传筛选鉴定出了由UNC-5异位表达导致的特定轴突导向缺陷的抑制因子,UNC-5是UNC-6/网蛋白导向信号的排斥性受体。这些突变鉴定出了八个基因,其产物是UNC-5在这些细胞中发挥功能所必需的。原则上,其中一些基因的功能可能涉及unc-73,它编码一种多结构域的细胞质蛋白,是rac和rho GTP酶的激活剂。UNC-73的缺失会导致轴突导向错误,据推测UNC-73在生长锥表面的导向受体所使用的多种信号通路中起作用,以调节潜在的细胞骨架。在这里,我们总结并讨论这些最新进展,这些进展正在推动我们对体内生长锥信号转导的理解。

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