Department of Developmental Biology, Hope Center for Neurological Disorders, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Neurosci. 2011 Nov 30;31(48):17689-700. doi: 10.1523/JNEUROSCI.3902-11.2011.
Axons often form synaptic contacts with multiple targets by extending branches along different paths. PHR (Pam/Highwire/RPM-1) family ubiquitin ligases are important regulators of axon development, with roles in axon outgrowth, target selection, and synapse formation. Here we report the function of Highwire, the Drosophila member of the PHR family, in promoting the segregation of sister axons during mushroom body (MB) formation. Loss of highwire results in abnormal development of the axonal lobes in the MB, leading to thinned and shortened lobes. The highwire defect is attributable to guidance errors after axon branching, in which sister axons that should target different lobes instead extend together into the same lobe. The highwire mutant MB displays elevation in the level of the MAPKKK Wallenda/DLK (dual leucine zipper kinase), a previously identified substrate of Highwire, and genetic suppression studies show that Wallenda/DLK is required for the highwire MB phenotype. The highwire lobe defect is limited to α/β lobe axons, but transgenic expression of highwire in the pioneering α'/β' neurons rescues the phenotype. Mosaic analysis further shows that α/β axons of highwire mutant clones develop normally, demonstrating a non-cell-autonomous role of Highwire for axon guidance. Genetic interaction studies suggest that Highwire and Plexin A signals may interact to regulate normal morphogenesis of α/β axons.
轴突经常通过沿着不同路径延伸分支与多个靶标形成突触接触。PHR(Pam/Highwire/RPM-1)家族泛素连接酶是轴突发育的重要调节剂,在轴突生长、靶标选择和突触形成中发挥作用。在这里,我们报告了果蝇 PHR 家族成员 Highwire 在促进蘑菇体(MB)形成过程中姐妹轴突分离中的作用。highwire 的缺失导致 MB 中轴突叶的异常发育,导致叶变薄和缩短。highwire 缺陷归因于分支后轴突的引导错误,其中应该靶向不同叶的姐妹轴突反而一起延伸到同一叶中。highwire 突变的 MB 显示出 MAPKKK Wallenda/DLK(双亮氨酸拉链激酶)水平升高,Wallenda/DLK 是 Highwire 的先前鉴定的底物,遗传抑制研究表明 Wallenda/DLK 是 highwire MB 表型所必需的。highwire 叶缺陷仅限于α/β 叶轴突,但在先驱性α'/β'神经元中转基因表达 highwire 可挽救表型。嵌合体分析进一步表明,highwire 突变克隆的α/β 轴突发育正常,表明 Highwire 对轴突导向具有非细胞自主作用。遗传相互作用研究表明,Highwire 和 Plexin A 信号可能相互作用以调节α/β 轴突的正常形态发生。