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谷氨酸受体亚基 GluK5 的 C 末端内质网滞留信号的新功能。

A novel function for the ER retention signals in the C-terminus of kainate receptor subunit, GluK5.

机构信息

Graduate College of Biomedical Sciences, Western University of Health Sciences, Pomona, CA 91711, United States of America.

Department of Neurobiology, University of Chicago, Chicago, IL 60637, United States of America.

出版信息

Biochim Biophys Acta Mol Cell Res. 2019 Mar;1866(3):459-473. doi: 10.1016/j.bbamcr.2018.10.009. Epub 2018 Oct 16.

Abstract

Classically, endoplasmic reticulum (ER) retention signals in secreted integral membrane proteins impose the requirement to assemble with other cognate subunits to form functional assemblies before they can exit the ER. We report that GluK5 has two ER retention signals in its cytoplasmic C-terminus: an arginine-based signal and a di-leucine motif previously thought to be an endocytic motif. GluK5 assembles with GluK2, but surprisingly GluK2 association does little to block the ER retention signals. We find instead that the ER retention signals are blocked by two proteins involved in intracellular trafficking, SAP97 and CASK. We show that SAP97, in the presence of CASK and the receptor complex, assumes an extended conformation. In the extended conformation, SAP97 makes its SH3 and GuK domains available to bind and sterically mask the ER retention signals in the GluK5 C-terminus. SAP97 and CASK are also necessary for sorting receptor cargoes into the local dendritic secretory pathway in neurons. We show that the ER retention signals of GluK5 play a vital role in sorting the receptor complex in the local dendritic secretory pathway in neurons. These data suggest a new role for ER retention signals in trafficking integral membrane proteins in neurons. SIGNIFICANCE: We present evidence that the ER retention signals in the kainate receptors containing GluK5 impose a requirement for sorting into local dendritic secretory pathways in neurons, as opposed to traversing the somatic Golgi apparatus. There are two ER retention signals in the C-terminus of GluK5. We show that both are blocked by physical association with SAP97 and CASK. The SH3 and GuK domains of SAP97, in the presence of CASK, bind directly to each ER retention signal and form a complex. These results support an entirely new function for ER retention signals in the C-termini of neuronal receptors, such as NMDA and kainate receptors, and define a mechanism for selective entry of receptors into local secretory pathways.

摘要

经典地,内质网 (ER) 保留信号在分泌的完整膜蛋白中施加了要求,即在它们能够离开 ER 之前,与其他同源亚基组装形成功能性组装。我们报告 GluK5 在其细胞质 C 末端有两个 ER 保留信号:一个基于精氨酸的信号和一个以前被认为是内吞信号的二亮氨酸基序。GluK5 与 GluK2 组装,但令人惊讶的是,GluK2 关联几乎不能阻止 ER 保留信号。相反,我们发现 ER 保留信号被两种参与细胞内运输的蛋白质 SAP97 和 CASK 阻断。我们表明,在 SAP97、CASK 和受体复合物存在的情况下,SAP97 会采取伸展构象。在伸展构象中,SAP97 使其 SH3 和 GuK 结构域可用,以结合并从空间上掩盖 GluK5 C 末端的 ER 保留信号。SAP97 和 CASK 也是将受体货物分拣到神经元中的局部树突分泌途径所必需的。我们表明,GluK5 的 ER 保留信号在神经元中的局部树突分泌途径中对分拣受体复合物起着至关重要的作用。这些数据表明 ER 保留信号在神经元中运输完整膜蛋白方面发挥了新的作用。意义:我们提供的证据表明,包含 GluK5 的 kainate 受体中的 ER 保留信号对在神经元中分拣到局部树突分泌途径提出了要求,而不是穿过体高尔基器。GluK5 的 C 末端有两个 ER 保留信号。我们表明,这两个信号都被与 SAP97 和 CASK 的物理关联所阻断。SAP97 的 SH3 和 GuK 结构域,在 CASK 的存在下,直接与每个 ER 保留信号结合并形成复合物。这些结果支持 ER 保留信号在神经元受体(如 NMDA 和 kainate 受体)的 C 末端的全新功能,并定义了一种用于受体选择性进入局部分泌途径的机制。

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