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首页> 外文期刊>PLoS One >Minimal structural elements required for midline repulsive signaling and regulation of Drosophila Robo1
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Minimal structural elements required for midline repulsive signaling and regulation of Drosophila Robo1

机译:中线排斥信令和果蝇Robo1的调节所需的最小结构元素

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The Roundabout (Robo) family of axon guidance receptors has a conserved ectodomain arrangement of five immunoglobulin-like (Ig) domains plus three fibronectin type III (Fn) repeats. Based on the strong evolutionary conservation of this domain structure among Robo receptors, as well as in vitro structural and domain-domain interaction studies of Robo family members, this ectodomain arrangement is predicted to be important for Robo receptor signaling in response to Slit ligands. Here, we define the minimal ectodomain structure required for Slit binding and midline repulsive signaling in vivo by Drosophila Robo1. We find that the majority of the Robo1 ectodomain is dispensable for both Slit binding and repulsive signaling. We show that a significant level of midline repulsive signaling activity is retained when all Robo1 ectodomain elements apart from Ig1 are deleted, and that the combination of Ig1 plus one additional ectodomain element (Ig2, Ig5, or Fn3) is sufficient to restore midline repulsion to wild type levels. Further, we find that deleting four out of five Robo1 Ig domains (ΔIg2-5) does not affect negative regulation of Robo1 by Commissureless (Comm) or Robo2, while variants lacking all three fibronectin repeats (ΔFn1-3 and ΔIg2-Fn3) are insensitive to regulation by both Comm and Robo2, signifying a novel regulatory role for Robo1’s Fn repeats. Our results provide an in vivo perspective on the importance of the conserved 5+3 ectodomain structure of Robo receptors, and suggest that specific biochemical properties and/or ectodomain structural conformations observed in vitro for domains other than Ig1 may have limited significance for in vivo signaling in the context of midline repulsion.
机译:环形交叉路口(Robo)的轴突引导受体具有保守的外胚层布置,其五种免疫球蛋白样(Ig)结构域加上三种纤连蛋白III型(Fn)重复。基于Robo受体中该领域结构的强大进化守恒,以及Robo家族成员的体外结构和结构域域相互作用研究,预测该构造布置对于响应狭缝配体的Robo受体信号传导至关重要。在这里,我们通过果蝇Robo1确定狭缝结合和中线排斥信号所需的最小突突结构。我们发现大多数Robo1外胚瘤可用于狭缝结合和排斥信号传导。当删除与IG1分开的所有Robo1肌突素元素时,保留了显着水平的中线排斥信令活性,并且Ig1加上一个另外的外胚瘤元素(Ig2,Ig5或Fn3)的组合足以恢复中线排斥野生类型水平。此外,我们发现删除五个Robo1 IG结构域(ΔIG2-5)不会影响ROBO1(COMM)或ROBO2的负调节,而缺少所有三种纤连蛋白重复的变体(ΔFN1-3和ΔIG2-FN3)是对Comm和Robo2的监管不敏感,旨在为Robo1的FN重复表示新的监管作用。我们的结果提供了一种体内关于Robo受体的保守5 + 3外域结构的重要性的视角,并表明除Ig1以外的域中的结构域的体外特异性生化特性和/或突突素结构兼容性可能对体内信号传导有限。在中线排斥的背景下。

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