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首页> 外文期刊>Molecular and cellular neurosciences >Sema4D localizes to synapses and regulates GABAergic synapse development as a membrane-bound molecule in the mammalian hippocampus
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Sema4D localizes to synapses and regulates GABAergic synapse development as a membrane-bound molecule in the mammalian hippocampus

机译:Sema4D定位于突触并作为哺乳动物海马中的膜结合分子来调节GABA能突触的发育

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While numerous recent advances have contributed to our understanding of excitatory synapse formation, the processes that mediate inhibitory synapse formation remain poorly defined. Previously, we discovered that RNAi-mediated knockdown of a Class 4 Semaphorin, Sema4D, led to a decrease in the density of inhibitory synapses without an apparent effect on excitatory synapse formation. Our current work has led us to new insights about the molecular mechanisms by which Sema4D regulates GABAergic synapse development. Specifically, we report that the extracellular domain of Sema4D is proteolytically cleaved from the surface of neurons. However, despite this cleavage event, Sema4D signals through its extracellular domain as a membrane-bound, synaptically localized protein required in the postsynaptic membrane for proper GABAergic synapse formation. Thus, as Sema4D is one of only a few molecules identified thus far that preferentially regulates GABAergic synapse formation, these findings have important implications for our mechanistic understanding of this process.
机译:尽管最近的许多进步为我们对兴奋性突触形成的理解做出了贡献,但是介导抑制性突触形成的过程仍然不清楚。以前,我们发现RNAi介导的4类信号量Sema4D的敲低导致抑制性突触的密度降低,而对兴奋性突触的形成没有明显影响。我们当前的工作使我们对Sema4D调节GABA能突触发展的分子机制有了新的认识。具体来说,我们报告说Sema4D的胞外域是从神经元表面蛋白水解切割的。但是,尽管发生了这种切割事件,Sema4D仍通过其胞外域发出信号,作为突触后膜中适当GABA能突触形成所需的膜结合突触定位蛋白。因此,由于Sema4D是迄今为止确定的少数几个优先调节GABA能突触形成的分子之一,因此这些发现对我们对该过程的机械理解具有重要意义。

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