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内源性RGS14是一种穿梭于细胞质与细胞核之间的蛋白质,定位于核周膜和细胞核内富含染色质的区域。

Endogenous RGS14 is a cytoplasmic-nuclear shuttling protein that localizes to juxtanuclear membranes and chromatin-rich regions of the nucleus.

作者信息

Branch Mary Rose, Hepler John R

机构信息

Department of Pharmacology, Emory University School of Medicine, Atlanta, Georgia, United States of America.

出版信息

PLoS One. 2017 Sep 21;12(9):e0184497. doi: 10.1371/journal.pone.0184497. eCollection 2017.

Abstract

Regulator of G protein signaling 14 (RGS14) is a multifunctional scaffolding protein that integrates G protein and H-Ras/MAPkinase signaling pathways to regulate synaptic plasticity important for hippocampal learning and memory. However, to date, little is known about the subcellular distribution and roles of endogenous RGS14 in a neuronal cell line. Most of what is known about RGS14 cellular behavior is based on studies of tagged, recombinant RGS14 ectopically overexpressed in unnatural host cells. Here, we report for the first time a comprehensive assessment of the subcellular distribution and dynamic localization of endogenous RGS14 in rat B35 neuroblastoma cells. Using confocal imaging and 3D-structured illumination microscopy, we find that endogenous RGS14 localizes to subcellular compartments not previously recognized in studies of recombinant RGS14. RGS14 localization was observed most notably at juxtanuclear membranes encircling the nucleus, at nuclear pore complexes (NPC) on both sides of the nuclear envelope and within intranuclear membrane channels, and within both chromatin-poor and chromatin-rich regions of the nucleus in a cell cycle-dependent manner. In addition, a subset of nuclear RGS14 localized adjacent to active RNA polymerase II. Endogenous RGS14 was absent from the plasma membrane in resting cells; however, the protein could be trafficked to the plasma membrane from juxtanuclear membranes in endosomes derived from ER/Golgi, following constitutive activation of endogenous RGS14 G protein binding partners using AlF4¯. Finally, our findings show that endogenous RGS14 behaves as a cytoplasmic-nuclear shuttling protein confirming what has been shown previously for recombinant RGS14. Taken together, the findings highlight possible cellular roles for RGS14 not previously recognized that are distinct from the regulation of conventional GPCR-G protein signaling, in particular undefined roles for RGS14 in the nucleus.

摘要

G蛋白信号调节因子14(RGS14)是一种多功能支架蛋白,它整合G蛋白和H-Ras/丝裂原活化蛋白激酶信号通路,以调节对海马学习和记忆至关重要的突触可塑性。然而,迄今为止,关于内源性RGS14在神经元细胞系中的亚细胞分布和作用知之甚少。目前已知的关于RGS14细胞行为的大部分信息是基于对在非天然宿主细胞中异位过表达的标记重组RGS14的研究。在这里,我们首次报告了对大鼠B35神经母细胞瘤细胞中内源性RGS14的亚细胞分布和动态定位的全面评估。使用共聚焦成像和三维结构光照显微镜,我们发现内源性RGS14定位于重组RGS14研究中先前未识别的亚细胞区室。最显著的是,在围绕细胞核的近核膜、核膜两侧的核孔复合体(NPC)以及核内膜通道内,以及细胞核中染色质贫乏和染色质丰富的区域内,均观察到RGS14的定位,且这种定位呈细胞周期依赖性。此外,一部分核RGS14定位于活跃的RNA聚合酶II附近。在静息细胞中,质膜上不存在内源性RGS14;然而,在使用AlF4¯组成性激活内源性RGS14 G蛋白结合伴侣后,该蛋白可从内质网/高尔基体来源的内体中的近核膜转运至质膜。最后,我们的研究结果表明,内源性RGS14表现为一种细胞质-细胞核穿梭蛋白,这证实了先前对重组RGS14的研究结果。综上所述,这些发现突出了RGS14可能具有的、先前未被认识到的细胞作用,这些作用不同于对传统GPCR-G蛋白信号的调节,特别是RGS14在细胞核中的未明确作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80a2/5608220/806b7617026a/pone.0184497.g001.jpg

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