Mulcahy Matthew J, Blattman Sydney B, Barrantes Francisco J, Lukas Ronald J, Hawrot Edward
Department of Molecular Pharmacology, Physiology and Biotechnology, Brown University, Providence, Rhode Island, United States of America.
Laboratory of Molecular Neurobiology, Institute of Biomedical Research, UCA-CONICET, Buenos Aires, Argentina.
PLoS One. 2015 Aug 10;10(8):e0134409. doi: 10.1371/journal.pone.0134409. eCollection 2015.
The α7-nicotinic acetylcholine receptor (α7-nAChR) is a ligand-gated ion channel widely expressed in vertebrates and is associated with numerous physiological functions. As transmembrane ion channels, α7-nAChRs need to be expressed on the surface of the plasma membrane to function. The receptor has been reported to associate with proteins involved with receptor biogenesis, modulation of receptor properties, as well as intracellular signaling cascades and some of these associated proteins may affect surface expression of α7-nAChRs. The putative chaperone resistance to inhibitors of cholinesterase 3 (Ric-3) has been reported to interact with, and enhance the surface expression of, α7-nAChRs. In this study, we identified proteins that associate with α7-nAChRs when Ric-3 is expressed. Using α-bungarotoxin (α-bgtx), we isolated and compared α7-nAChR-associated proteins from two stably transfected, human tumor-derived cell lines: SH-EP1-hα7 expressing human α7-nAChRs and the same cell line further transfected to express Ric-3, SH-EP1-hα7-Ric-3. Mass spectrometric analysis of peptides identified thirty-nine proteins that are associated with α7-nAChRs only when Ric-3 was expressed. Significantly, and consistent with reports of Ric-3 function in the literature, several of the identified proteins are involved in biological processes that may affect nAChR surface expression such as post-translational processing of proteins, protein trafficking, and protein transport. Additionally, proteins affecting the cell cycle, the cytoskeleton, stress responses, as well as cyclic AMP- and inositol triphosphate-dependent signaling cascades were identified. These results illuminate how α-bgtx may be used to isolate and identify α7-nAChRs as well as how the expression of chaperones such as Ric-3 can influence proteins associating with α7-nAChRs. These associating proteins may alter activities of α7-nAChRs to expand their functionally-relevant repertoire as well as to affect biogenesis and membrane trafficking of α7-nAChRs.
α7-烟碱型乙酰胆碱受体(α7-nAChR)是一种配体门控离子通道,在脊椎动物中广泛表达,并与多种生理功能相关。作为跨膜离子通道,α7-nAChRs需要在质膜表面表达才能发挥功能。据报道,该受体与参与受体生物发生、受体特性调节以及细胞内信号级联反应的蛋白质相关联,其中一些相关蛋白质可能会影响α7-nAChRs的表面表达。据报道,假定的伴侣蛋白抗胆碱酯酶3(Ric-3)可与α7-nAChRs相互作用并增强其表面表达。在本研究中,我们鉴定了在Ric-3表达时与α7-nAChRs相关联的蛋白质。使用α-银环蛇毒素(α-bgtx),我们从两种稳定转染的人肿瘤衍生细胞系中分离并比较了与α7-nAChR相关的蛋白质:表达人α7-nAChRs的SH-EP1-hα7以及进一步转染以表达Ric-3的同一细胞系SH-EP1-hα7-Ric-3。对肽段的质谱分析鉴定出三十九种仅在Ric-3表达时与α7-nAChRs相关的蛋白质。重要的是,与文献中关于Ric-3功能的报道一致,鉴定出的几种蛋白质参与了可能影响nAChR表面表达的生物学过程,如蛋白质的翻译后加工、蛋白质运输和蛋白质转运。此外,还鉴定出了影响细胞周期、细胞骨架、应激反应以及环磷酸腺苷和肌醇三磷酸依赖性信号级联反应的蛋白质。这些结果阐明了α-bgtx如何用于分离和鉴定α7-nAChRs,以及伴侣蛋白如Ric-3的表达如何影响与α7-nAChRs相关的蛋白质。这些相关蛋白质可能会改变α7-nAChRs的活性,以扩展其功能相关的范围,同时影响α7-nAChRs的生物发生和膜运输。