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D2-多巴胺受体将 G 蛋白信号转导调节因子 9-2 靶向到去污剂抗性膜部分。

D(2)-Dopamine receptors target regulator of G protein signaling 9-2 to detergent-resistant membrane fractions.

机构信息

Department of Biomedical and Pharmacological Sciences, College of Pharmacy, University of Rhode Island, Kingston, Rhode Island, USA.

出版信息

J Neurochem. 2012 Jan;120(1):56-69. doi: 10.1111/j.1471-4159.2011.07559.x. Epub 2011 Nov 24.

Abstract

Detergent-resistant membranes (DRM) are thought to contain structures such as lipid rafts that are involved in compartmentalizing cell membranes. We report that the majority of D(2)-dopamine receptors (D(2)R) expressed endogenously in mouse striatum or expressed in immortalized cell-lines is found in DRM. In addition, exogenous co-expression of D(2)R in a cell line shifted the expression of regulator of G protein signaling 9-2 (RGS9-2) into DRM. RGS9-2 is a protein that is highly enriched in the striatum and specifically regulates striatal D(2)R. In the striatum, RGS9-2 is mostly associated with DRMs but when expressed in cell lines, RGS9-2 is present in the soluble cytoplasmic fraction. In contrast, the majority of mu opioid receptors and delta opioid receptors are found in detergent-soluble membrane and there was no shift of RGS9-2 into DRM after co-expression of mu opioid receptor. These data suggest that the targeting of RGS9-2 to DRM in the striatum is mediated by D(2)R and that DRM is involved in the formation of a D(2)R signaling complex. D(2)R-mediated targeting of RGS9-2 to DRM was blocked by the deletion of the RGS9-2 DEP domain or by a point mutation that abolishes the GTPase accelerating protein function of RGS9-2.

摘要

去污剂抗性膜(DRM)被认为包含参与分隔细胞膜的结构,如脂筏。我们报告说,大多数在小鼠纹状体中内源性表达或在永生化细胞系中表达的 D(2)-多巴胺受体(D(2)R)存在于 DRM 中。此外,在细胞系中外源性共表达 D(2)R 将 G 蛋白信号调节因子 9-2(RGS9-2)的表达转移到 DRM 中。RGS9-2 是一种在纹状体中高度丰富的蛋白质,专门调节纹状体 D(2)R。在纹状体中,RGS9-2 主要与 DRM 相关,但在细胞系中表达时,RGS9-2 存在于可溶性细胞质部分。相比之下,大多数 mu 阿片受体和 delta 阿片受体存在于去污剂可溶性膜中,并且在共表达 mu 阿片受体后,RGS9-2 没有转移到 DRM 中。这些数据表明,RGS9-2 在纹状体中的 DRM 靶向是由 D(2)R 介导的,并且 DRM 参与 D(2)R 信号复合物的形成。通过删除 RGS9-2 的 DEP 结构域或通过消除 RGS9-2 的 GTPase 加速蛋白功能的点突变,阻断了 D(2)R 介导的 RGS9-2 向 DRM 的靶向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c710/3240708/dff58b0cd05b/nihms-335481-f0001.jpg

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