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果蝇胚胎中,“迂回”基因家族在感觉轴突导向过程中的功能是由依赖Slit和不依赖Slit的机制介导的。

Roundabout gene family functions during sensory axon guidance in the drosophila embryo are mediated by both Slit-dependent and Slit-independent mechanisms.

作者信息

Parsons Linda, Harris Kerri-Lee, Turner Kirsty, Whitington Paul M

机构信息

Department of Anatomy and Cell Biology, University of Melbourne, Victoria 3010, Australia.

出版信息

Dev Biol. 2003 Dec 15;264(2):363-75. doi: 10.1016/j.ydbio.2003.08.020.

Abstract

roundabout (robo) family genes play key roles in axon guidance in a wide variety of animals. We have investigated the roles of the robo family members, robo, robo2, and robo3, in the guidance of sensory axons in the Drosophila embryo. In robo(-/-), slit(-/-), and robo(-/+) slit(-/+) mutants, lateral cluster sensory neurons misproject to cells and axons in the nearby ventral' (v') cluster. These phenotypes, together with the normal expression pattern of Slit and Robo, suggest that Slit ligand secreted from the epidermis interacts with Robo receptors on lateral cluster sensory growth cones to limit their exploration of nearby attractive substrates. The most common sensory axon phenotype seen in robo2(-/-) mutants was misprojection of dorsal cluster sensory axons away from their normal growth substrate, the transverse connective of the trachea. slit appears to play no role in this aspect of sensory axon growth. Robo2 is expressed, not on the dorsal sensory axons, but on the transverse connective. These results suggest a novel, non-cell-autonomous mechanism for axon guidance by robo family genes: Robo2 expressed on the trachea acts as an attractant for the dorsal sensory growth cones.

摘要

“环形”(robo)家族基因在多种动物的轴突导向中发挥关键作用。我们研究了robo家族成员robo、robo2和robo3在果蝇胚胎感觉轴突导向中的作用。在robo(-/-)、slit(-/-)和robo(-/+)slit(-/+)突变体中,外侧簇感觉神经元错误投射到附近腹侧(v')簇中的细胞和轴突上。这些表型,连同Slit和Robo的正常表达模式,表明从表皮分泌的Slit配体与外侧簇感觉生长锥上的Robo受体相互作用,以限制它们对附近有吸引力底物的探索。在robo2(-/-)突变体中最常见的感觉轴突表型是背侧簇感觉轴突从其正常生长底物气管的横向连接离开时的错误投射。在感觉轴突生长的这方面,slit似乎不起作用。Robo2不是在背侧感觉轴突上表达,而是在横向连接上表达。这些结果提示了一种由robo家族基因介导的轴突导向的新的非细胞自主机制:气管上表达的Robo2作为背侧感觉生长锥的一种吸引物。

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