首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >The extracellular matrix proteoglycan perlecan facilitates transmembrane semaphorin-mediated repulsive guidance
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The extracellular matrix proteoglycan perlecan facilitates transmembrane semaphorin-mediated repulsive guidance

机译:细胞外基质蛋白聚糖Perlecan促进跨膜信号量介导的排斥指导

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The Drosophila transmembrane semaphorin-1a (Sema-1a) is a repulsive guidance cue that uses the Plexin A (PlexA) receptor during neural development. Sema-1a is required in axons to facilitate motor axon defasciculation at guidance choice points. We found that mutations in the trol gene strongly suppress Sema-1a-mediated repulsive axon guidance. trol encodes the phylogenetically conserved secreted heparan sulfate proteoglycan (HSPG) perlecan, a component of the extracellular matrix. Motor axon guidance defects in perlecan mutants resemble those observed in Sema-1a- and PlexA-null mutant embryos, and perlecan mutants genetically interact with PlexA and Sema-1a. Perlecan protein is found in both the CNS and the periphery, with higher expression levels in close proximity to motor axon trajectories and pathway choice points. Restoring perlecan to mutant motor neurons rescues perlecan axon guidance defects. Perlecan augments the reduction in phospho-focal adhesion kinase (phospho-FAK) levels that result from treating insect cells in vitro with Sema-1a, and genetic interactions among integrin, Sema-1a, and FAK in vivo support an antagonistic relationship between Sema-1a and integrin signaling. Therefore, perlecan is required for Sema-1a-PlexA-mediated repulsive guidance, revealing roles for extracellular matrix proteoglycans in modulating transmembrane guidance cue signaling during neural development.
机译:果蝇跨膜semaphorin-1a(Sema-1a)是一种排斥性指导信号,在神经发育过程中使用Plexin A(PlexA)受体。轴突需要Sema-1a,以在引导选择点促进运动轴突脱皮。我们发现,trol基因中的突变强烈抑制Sema-1a介导的排斥性轴突指导。 trol编码系统发育上保守的分泌型硫酸乙酰肝素蛋白聚糖(HSPG)Perlecan(一种细胞外基质的成分)。 perlecan突变体中的运动轴突引导缺陷类似于在Sema-1a和PlexA-null突变体胚胎中观察到的缺陷,并且perlecan突变体与PlexA和Sema-1a遗传相互作用。在中枢神经系统和周围区域都发现了Perlecan蛋白,在靠近运动轴突轨迹和途径选择点的位置有较高的表达水平。恢复perlecan突变运动神经元可以挽救perlecan轴突指导缺陷。 Perlecan增强了用Sema-1a体外处理昆虫细胞而导致的磷酸焦点粘附激酶(phospho-FAK)水平的降低,而整联蛋白,Sema-1a和FAK在体内的遗传相互作用支持Sema-a之间的拮抗关系。 1a和整联蛋白信号传导。因此,Perlecan是Sema-1a-PlexA介导的排斥指导所必需的,揭示了细胞外基质蛋白聚糖在神经发育过程中调节跨膜指导信号的作用。

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