Program in Cellular Neuroscience, Neurodegeneration, and Repair, Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06536, USA.
Genes Dev. 2012 Oct 1;26(19):2206-21. doi: 10.1101/gad.193409.112.
The chemotrophic factor Netrin can simultaneously instruct different neurodevelopmental programs in individual neurons in vivo. How neurons correctly interpret the Netrin signal and undergo the appropriate neurodevelopmental response is not understood. Here we identify MIG-10 isoforms as critical determinants of individual cellular responses to Netrin. We determined that distinct MIG-10 isoforms, varying only in their N-terminal motifs, can localize to specific subcellular domains and are differentially required for discrete neurodevelopmental processes in vivo. We identified MIG-10B as an isoform uniquely capable of localizing to presynaptic regions and instructing synaptic vesicle clustering in response to Netrin. MIG-10B interacts with Abl-interacting protein-1 (ABI-1)/Abi1, a component of the WAVE complex, to organize the actin cytoskeleton at presynaptic sites and instruct vesicle clustering through SNN-1/Synapsin. We identified a motif in the MIG-10B N-terminal domain that is required for its function and localization to presynaptic sites. With this motif, we engineered a dominant-negative MIG-10B construct that disrupts vesicle clustering and animal thermotaxis behavior when expressed in a single neuron in vivo. Our findings indicate that the unique N-terminal domains confer distinct MIG-10 isoforms with unique capabilities to localize to distinct subcellular compartments, organize the actin cytoskeleton at these sites, and instruct distinct Netrin-dependent neurodevelopmental programs.
趋化因子 Netrin 可在体内单个神经元中同时指导不同的神经发育程序。神经元如何正确解释 Netrin 信号并发生适当的神经发育反应尚不清楚。在这里,我们确定了 MIG-10 异构体作为个体细胞对 Netrin 反应的关键决定因素。我们确定,不同的 MIG-10 异构体仅在其 N 端基序上有所不同,可以定位于特定的亚细胞结构域,并在体内的离散神经发育过程中具有不同的需求。我们确定 MIG-10B 是一种独特的异构体,能够定位于突触前区域,并响应 Netrin 指导突触小泡聚集。MIG-10B 与 Abl 相互作用蛋白-1(ABI-1)/Abi1 相互作用,Abi1 是 WAVE 复合物的一个组成部分,在突触前部位组织肌动蛋白细胞骨架,并通过 SNN-1/Synapsin 指导囊泡聚集。我们确定了 MIG-10B N 端结构域中的一个基序,该基序是其功能和定位到突触前部位所必需的。通过这个基序,我们设计了一个显性负性的 MIG-10B 构建体,当在体内单个神经元中表达时,它会破坏囊泡聚集和动物热趋性行为。我们的研究结果表明,独特的 N 端结构域赋予不同的 MIG-10 异构体独特的能力,使其能够定位于不同的亚细胞隔室,在这些部位组织肌动蛋白细胞骨架,并指导不同的依赖于 Netrin 的神经发育程序。