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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Importin-beta11 regulates synaptic phosphorylated mothers against decapentaplegic, and thereby influences synaptic development and function at the Drosophila neuromuscular junction.
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Importin-beta11 regulates synaptic phosphorylated mothers against decapentaplegic, and thereby influences synaptic development and function at the Drosophila neuromuscular junction.

机译:Importin-beta11调节突触磷酸化的母亲抵抗十足功能不全,从而影响果蝇神经肌肉连接处的突触发育和功能。

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摘要

Importin proteins act both at the nuclear pore to promote substrate entry and in the cytosol during signal trafficking. Here, we describe mutations in the Drosophila gene importin-beta11, which has not previously been analyzed genetically. Mutants of importin-beta11 died as late pupae from neuronal defects, and neuronal importin-beta11 was present not only at nuclear pores but also in the cytosol and at synapses. Neurons lacking importin-beta11 were viable and properly differentiated but exhibited discrete defects. Synaptic transmission was defective in adult photoreceptors and at larval neuromuscular junctions (NMJs). Mutant photoreceptor axons formed grossly normal projections and synaptic terminals in the brain, but synaptic arbors on larval muscles were smaller while still containing appropriate synaptic components. Bone morphogenic protein (BMP) signaling was the apparent cause of the observed NMJ defects. Importin-beta11 interacted genetically with the BMP pathway, and at mutant synaptic boutons, a key component of this pathway, phosphorylated mothers against decapentaplegic (pMAD), was reduced. Neuronal expression of an importin-beta11 transgene rescued this phenotype as well as the other observed neuromuscular phenotypes. Despite the loss of synaptic pMAD, pMAD persisted in motor neuron nuclei, suggesting a specific impairment in the local function of pMAD. Restoring levels of pMAD to mutant terminals via expression of constitutively active type I BMP receptors or by reducing retrograde transport in motor neurons also restored synaptic strength and morphology. Thus, importin-beta11 function interacts with the BMP pathway to regulate a pool of pMAD that must be present at the presynapse for its proper development and function.
机译:Importin蛋白在信号运输过程中既作用于核孔以促进底物进入,又作用于胞质溶胶。在这里,我们描述了果蝇基因importin-beta11中的突变,以前尚未进行过遗传分析。 importin-beta11的突变体因神经元缺陷而在后期p中死亡,神经元importin-beta11不仅存在于核孔中,而且还存在于胞质溶胶和突触中。缺乏importin-beta11的神经元是可行的,并已适当分化,但表现出离散的缺陷。在成人感光细胞和幼虫神经肌肉接头(NMJs)中,突触传递是有缺陷的。突变的光感受器轴突在大脑中形成大致正常的突起和突触末端,但是幼虫肌肉上的突触柄较小,同时仍包含适当的突触成分。骨形态发生蛋白(BMP)信号是观察到的NMJ缺陷的明显原因。 Importin-beta11与BMP途径发生了遗传相互作用,并且在突变突触按钮中,该途径的关键组成部分,针对去势性瘫痪(pMAD)的磷酸化母亲减少了。 importin-beta11转基因的神经元表达挽救了该表型以及其他观察到的神经肌肉表型。尽管失去了突触pMAD,pMAD仍保留在运动神经元核中,提示pMAD的局部功能存在特定损伤。通过组成型活性的I型BMP受体的表达或通过减少在运动神经元逆行运输恢复PMAD的水平,以突变体终端也恢复突触强度和形态。因此,importin-beta11功能与BMP途径相互作用,调节突触前必须存在的pMAD库,以使其正常发育和发挥功能。

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