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秀丽隐杆线虫神经环中轴突寻路和延伸所需的基因。

Genes required for axon pathfinding and extension in the C. elegans nerve ring.

作者信息

Zallen J A, Kirch S A, Bargmann C I

机构信息

Programs in Developmental Biology, Neuroscience and Genetics, Howard Hughes Medical Institute, Department of Anatomy, University of California, San Francisco, California 94143-0452, USA.

出版信息

Development. 1999 Aug;126(16):3679-92. doi: 10.1242/dev.126.16.3679.

Abstract

Over half of the neurons in Caenorhabditis elegans send axons to the nerve ring, a large neuropil in the head of the animal. Genetic screens in animals that express the green fluorescent protein in a subset of sensory neurons identified eight new sax genes that affect the morphology of nerve ring axons. sax-3/robo mutations disrupt axon guidance in the nerve ring, while sax-5, sax-9 and unc-44 disrupt both axon guidance and axon extension. Axon extension and guidance proceed normally in sax-1, sax-2, sax-6, sax-7 and sax-8 mutants, but these animals exhibit later defects in the maintenance of nerve ring structure. The functions of existing guidance genes in nerve ring development were also examined, revealing that SAX-3/Robo acts in parallel to the VAB-1/Eph receptor and the UNC-6/netrin, UNC-40/DCC guidance systems for ventral guidance of axons in the amphid commissure, a major route of axon entry into the nerve ring. In addition, SAX-3/Robo and the VAB-1/Eph receptor both function to prevent aberrant axon crossing at the ventral midline. Together, these genes define pathways required for axon growth, guidance and maintenance during nervous system development.

摘要

秀丽隐杆线虫超过半数的神经元会将轴突发送至神经环,神经环是该动物头部的一个大型神经纤维网。在一部分感觉神经元中表达绿色荧光蛋白的动物中进行的遗传筛选,鉴定出了八个影响神经环轴突形态的新sax基因。sax-3/robo突变会破坏神经环中的轴突导向,而sax-5、sax-9和unc-44则会同时破坏轴突导向和轴突延伸。在sax-1、sax-2、sax-6、sax-7和sax-8突变体中,轴突延伸和导向正常进行,但这些动物在神经环结构维持方面表现出后期缺陷。研究人员还考察了现有导向基因在神经环发育中的功能,结果显示SAX-3/Robo与VAB-1/Eph受体以及UNC-6/netrin、UNC-40/DCC导向系统并行发挥作用,以引导轴突在腹侧连合(轴突进入神经环的主要路径)中向腹侧生长。此外,SAX-3/Robo和VAB-1/Eph受体都具有防止轴突在腹侧中线异常交叉的功能。这些基因共同定义了神经系统发育过程中轴突生长、导向和维持所需的通路。

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