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G 蛋白 αq 表现出依赖表达水平的不同信号转导模式。

G protein αq exerts expression level-dependent distinct signaling paradigms.

机构信息

Department of Chemistry and Biochemistry, The University of Toledo, Toledo, OH 43606, USA.

McDonnell Genome Institute, Washington University in St. Louis, St. Louis, MO 63108, USA.

出版信息

Cell Signal. 2019 Jun;58:34-43. doi: 10.1016/j.cellsig.2019.02.006. Epub 2019 Mar 5.

DOI:10.1016/j.cellsig.2019.02.006
PMID:30849518
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6534355/
Abstract

G protein αq-coupled receptors (Gq-GPCRs) primarily signal through GαqGTP mediated phospholipase Cβ (PLCβ) stimulation and the subsequent hydrolysis of phosphatidylinositol 4, 5 bisphosphate (PIP2). Though Gq-heterotrimer activation results in both GαqGTP and Gβγ, unlike Gi/o-receptors, it is unclear if Gq-coupled receptors employ Gβγ as a major signal transducer. Compared to Gi/o- and Gs-coupled receptors, we observed that most cell types exhibit a limited free Gβγ generation upon Gq-pathway and Gαq/11 heterotrimer activation. We show that cells transfected with Gαq or endogenously expressing more than average-levels of Gαq/11 compared to Gαs and Gαi exhibit a distinct signaling regime primarily characterized by recovery-resistant PIP2 hydrolysis. Interestingly, the elevated Gq-expression is also associated with enhanced free Gβγ generation and signaling. Furthermore, the gene GNAQ, which encodes for Gαq, has recently been identified as a cancer driver gene. We also show that GNAQ is overexpressed in tumor samples of patients with Kidney Chromophobe (KICH) and Kidney renal papillary (KIRP) cell carcinomas in a matched tumor-normal sample analysis, which demonstrates the clinical significance of Gαq expression. Overall, our data indicates that cells usually express low Gαq levels, likely safeguarding cells from excessive calcium as wells as from Gβγ signaling.

摘要

G 蛋白 αq 偶联受体 (Gq-GPCRs) 主要通过 GαqGTP 介导的磷酯酶 Cβ (PLCβ) 刺激和随后的磷脂酰肌醇 4,5 二磷酸 (PIP2) 的水解来传递信号。虽然 Gq-异三聚体的激活导致 GαqGTP 和 Gβγ 的产生,但与 Gi/o-受体不同,目前尚不清楚 Gq 偶联受体是否将 Gβγ 作为主要信号转导器。与 Gi/o-和 Gs-偶联受体相比,我们观察到大多数细胞类型在 Gq 途径和 Gαq/11 异三聚体激活时仅产生有限的游离 Gβγ。我们表明,与 Gαs 和 Gαi 相比,转染 Gαq 或内源性表达高于平均水平的 Gαq/11 的细胞表现出一种独特的信号转导状态,主要特征是恢复抗性的 PIP2 水解。有趣的是,Gq 表达的升高也与游离 Gβγ 的产生和信号增强相关。此外,编码 Gαq 的基因 GNAQ 最近被鉴定为癌症驱动基因。我们还表明,在肾嫌色细胞瘤 (KICH) 和肾乳头状细胞癌 (KIRP) 患者的肿瘤样本中,GNAQ 基因在匹配的肿瘤-正常样本分析中过表达,这证明了 Gαq 表达的临床意义。总体而言,我们的数据表明,细胞通常表达低水平的 Gαq,这可能使细胞免受过量钙以及 Gβγ 信号的影响。

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