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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Neuronal Dystroglycan Is Necessary for Formation and Maintenance of Functional CCK-Positive Basket Cell Terminals on Pyramidal Cells
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Neuronal Dystroglycan Is Necessary for Formation and Maintenance of Functional CCK-Positive Basket Cell Terminals on Pyramidal Cells

机译:神经元试蛋白是锥体细胞上官能团CCK阳性篮细胞端子的形成和维持所必需的

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Distinct types of GABAergic interneurons target different subcellular domains of pyramidal cells, thereby shaping pyramidal cell activity patterns. Whether the presynaptic heterogeneity of GABAergic innervation is mirrored by specific postsynaptic factors is largely unexplored. Here we show that dystroglycan, a protein responsible for the majority of congenital muscular dystrophies when dysfunctional, has a function at postsynaptic sites restricted to a subset of GABAergic interneurons. Conditional deletion of Dag1, encoding dystroglycan, in pyramidal cells caused loss of CCK-positive basket cell terminals in hippocampus and neocortex. PV-positive basket cell terminals were unaffected in mutant mice, demonstrating interneuron subtype-specific function of dystroglycan. Loss of dystroglycan in pyramidal cells had little influence on clustering of other GABAergic postsynaptic proteins and of glutamatergic synaptic proteins. CCK-positive terminals were not established at P21 in the absence of dystroglycan and were markedly reduced when dystroglycan was ablated in adult mice, suggesting a role for dystroglycan in both formation and maintenance of CCK-positive terminals. The necessity of neuronal dystroglycan for functional innervation by CCK-positive basket cell axon terminals was confirmed by reduced frequency of inhibitory events in pyramidal cells of dystroglycan-deficient mice and further corroborated by the inefficiency of carbachol to increase IPSC frequency in these cells. Finally, neurexin binding seems dispensable for dystroglycan function because knock-in mice expressing binding-deficient T190M dystroglycan displayed normal CCK-positive terminals. Together, we describe a novel function of dystroglycan in interneuron subtype-specific trans-synaptic signaling, revealing correlation of presynaptic and postsynaptic molecular diversity.
机译:不同类型的甘蓝型锥形锥体冠状细胞亚细胞域,从而形成金字塔细胞活性模式。通过特定的突触因子镜像加工内接管的突触前异质性是在很大程度上未开发的。在这里,我们显示Dystroglycan,一种蛋白质,该蛋白质负责多重性肌营养不良的蛋白质失调时,在突触后的部位具有限制性的突触位点的功能,限于加布枸杞子。锥形细胞中的条件缺失DAG1,编码Dystroglycan,引起海马和新科的CCK阳性篮细胞末端的损失。 PV阳性篮细胞末端在突变小鼠中不受影响,证明了Dystoglycan的中间核亚型特异性。金字塔细胞中的Dystoglycan的丧失对其他加巴能突触蛋白和谷氨酸突触突触蛋白的聚类影响不大。在没有Dystroglycan的情况下,在P21不建立CCK阳性末端,并且当Dystroglycan在成人小鼠中烧蚀时显着降低,表明在CCK阳性末端的形成和维持中,在Dystroglycan中作用。通过CCK阳性篮细胞轴轴线末端用于功能性支配的神经元试剂的必要性通过减少缺乏蛋白酶缺乏小鼠的锥体细胞中的抑制事件的频率,并通过卡巴胆汁的效率进一步证实,以增加这些细胞中的IPSC频率。最后,Neurexin结合似乎可以用于Dystroglycan功能,因为表达结合缺陷的T190M Dystroglycan的敲击小鼠显示正常的CCK阳性末端。我们在一起描述了中型亚型亚型跨突触信号中Dystoglycan的新功能,揭示了突触前和突触后分子多样性的相关性。

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