首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >GRIP1 interlinks N-cadherin and AMPA receptors at vesicles to promote combined cargo transport into dendrites
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GRIP1 interlinks N-cadherin and AMPA receptors at vesicles to promote combined cargo transport into dendrites

机译:GRIP1将N-钙黏着蛋白和AMPA受体连接在囊泡上以促进组合货物转运到树突中

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摘要

The GluA2 subunit of AMPA-type glutamate receptors (AMPARs) regulates excitatory synaptic transmission in neurons. In addition, the transsynaptic cell adhesion molecule N-cadherin controls excitatory synapse function and stabilizes dendritic spine structures. At postsynaptic membranes, GluA2 physically binds N-cadherin, underlying spine growth and synaptic modulation. We report that N-cadherin binds to PSD-95/SAP90/DLG/ZO-1 (PDZ) domain 2 of the glutamate receptor interacting protein 1 (GRIP1) through its intracellular C terminus. N-cadherin and GluA2-containing AMPARs are presorted to identical transport vesicles for dendrite delivery, and live imaging reveals cotransport of both proteins. The kinesin KIF5 powers GluA2/N-cadherin codelivery by using GRIP1 as a multilink interface. Notably, GluA2 and N-cadherin use different PDZ domains on GRIP1 to simultaneously bind the transport complex, and interference with either binding motif impairs the turnover of both synaptic cargoes. Depolymerization of microtubules, deletion of the KIF5 motor domain, or specific blockade of AMPAR exocytosis affects delivery of GluA2/N-cadherin vesicles. At the functional level, interference with this cotransport reduces the number of spine protrusions and excitatory synapses. Our data suggest the concept that the multi-PDZ-domain adaptor protein GRIP1 can act as a scaffold at trafficking vesicles in the combined delivery of AMPARs and N-cadherin into dendrites.
机译:AMPA型谷氨酸受体(AMPAR)的GluA2亚基调节神经元中的兴奋性突触传递。此外,跨突触细胞粘附分子N-钙粘着蛋白控制兴奋性突触功能并稳定树突棘结构。在突触后膜,GluA2物理结合N-钙黏着蛋白,潜在的脊柱生长和突触调节。我们报告说,N-钙粘着蛋白通过其细胞内C末端结合到谷氨酸受体相互作用蛋白1(GRIP1)的PSD-95 / SAP90 / DLG / ZO-1(PDZ)域2。 N-钙黏着蛋白和含GluA2的AMPAR被预先分选到相同的运输囊泡中以进行树突状递送,并且实时成像揭示了这两种蛋白的共转运。通过使用GRIP1作为多链路接口,驱动蛋白KIF5为GluA2 / N-钙粘蛋白代码传递提供了动力。值得注意的是,GluA2和N-钙粘着蛋白在GRIP1上使用不同的PDZ域来同时结合转运复合物,并且对任何一个结合基序的干扰都会损害两种突触货物的周转率。微管的解聚,KIF5电机域的删除或AMPAR胞吐作用的特异性阻滞影响GluA2 / N-钙粘蛋白囊泡的交付。在功能水平上,对该共转运的干扰减少了脊柱突出和兴奋性突触的数量。我们的数据提出了这样的概念,即多PDZ结构域衔接蛋白GRIP1可以在AMPAR和N-钙粘蛋白联合递送到树突中充当运输小泡的支架。

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