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Regulator of G-protein signalling expression and function in ovarian cancer cell lines

机译:卵巢癌细胞系中G蛋白信号传导表达和功能的调节剂

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摘要

Regulator of G-protein signalling (RGS)2 proteins critically regulate signalling cascades initiated by G-protein coupled receptors (GPCRs) by accelerating the deactivation of heterotrimeric G-proteins. Lysophosphatidic acid (LPA) is the predominant growth factor that drives the progression of ovarian cancer by activating specific GPCRs and G-proteins expressed in ovarian cancer cells. We have recently reported that RGS proteins endogenously expressed in SKOV-3 ovarian cancer cells dramatically attenuate LPA stimulated cell signalling. The goal of this study was twofold: first, to identify candidate RGS proteins expressed in SKOV-3 cells that may account for the reported negative regulation of G-protein signalling, and second, to determine if these RGS protein transcripts are differentially expressed among commonly utilized ovarian cancer cell lines and non-cancerous ovarian cell lines. Reverse transcriptase-PCR was performed to determine transcript expression of 22 major RGS subtypes in RNA isolated from SKOV-3, OVCAR-3 and Caov-3 ovarian cancer cell lines and non-cancerous immortalized ovarian surface epithelial (IOSE) cells. Fifteen RGS transcripts were detected in SKOV-3 cell lines. To compare the relative expression levels in these cell lines, quantitative real time RT-PCR was performed on select transcripts. RGS19/GAIP was expressed at similar levels in all four cell lines, while RGS2 transcript was detected at levels slightly lower in ovarian cancer cells as compared to IOSE cells. RGS4 and RGS6 transcripts were expressed at dramatically different levels in ovarian cancer cell lines as compared to IOSE cells. RGS4 transcript was detected in IOSE at levels several thousand fold higher than its expression level in ovarian cancer cells lines, while RGS6 transcript was expressed fivefold higher in SKOV-3 cells as compared to IOSE cells, and over a thousand fold higher in OVCAR-3 and Caov-3 cells as compared to IOSE cells. Functional studies of RGS 2, 6, and 19/GAIP were performed by measuring their effects on LPA stimulated production of inositol phosphates. In COS-7 cells expressing individual exogenous LPA receptors, RGS2 and RSG19/GAIP attenuated signalling initiated by LPA1, LPA2, or LPA3, while RGS6 only inhibited signalling initiated by LPA2 receptors. In SKOV-3 ovarian cancer cells, RGS2 but not RGS6 or RGS19/GAIP, inhibited LPA stimulated inositol phosphate production. In contrast, in CAOV-3 cells RGS19/GAIP strongly attenuated LPA signalling. Thus, multiple RGS proteins are expressed at significantly different levels in cells derived from cancerous and normal ovarian cells and at least two candidate RGS transcripts have been identified to account for the reported regulation of LPA signalling pathways in ovarian cancer cells.
机译:G蛋白信号转导蛋白(RGS) 2 的调节剂通过加速异源三聚体G蛋白的失活来关键性调节G蛋白偶联受体(GPCR)引发的信号级联反应。溶血磷脂酸(LPA)是主要的生长因子,通过激活卵巢癌细胞中表达的特异性GPCR和G蛋白来驱动卵巢癌的发展。我们最近报道了在SKOV-3卵巢癌细胞中内源表达的RGS蛋白极大地减弱了LPA刺激的细胞信号传导。这项研究的目标是双重的:首先,确定在SKOV-3细胞中表达的候选RGS蛋白可能解释了报道的G蛋白信号转导的负调控,其次,确定了这些RGS蛋白转录物是否在普通人中差异表达。利用了卵巢癌细胞系和非癌性卵巢癌细胞系。进行逆转录酶-PCR以确定从SKOV-3,OVCAR-3和Caov-3卵巢癌细胞系和非癌性永生化卵巢表面上皮细胞(IOSE)细胞分离的RNA中22种主要RGS亚型的转录表达。在SKOV-3细胞系中检测到15个RGS转录本。为了比较这些细胞系中的相对表达水平,对选定的转录本进行了定量实时RT-PCR。与IOSE细胞相比,RGS19 / GAIP在所有四个细胞系中的表达水平均相似,而在卵巢癌细胞中检测到的RGS2转录水平略低。与IOSE细胞相比,RGS4和RGS6转录本在卵巢癌细胞系中的表达水平明显不同。在IOSE中检测到RGS4转录物的水平比其在卵巢癌细胞系中的表达水平高数千倍,而在SKOV-3细胞中,RGS6转录物的表达量比IOSE细胞高五倍,而在OVCAR-3中则高出一千倍与IOSE细胞相比,Caov-3和Caov-3细胞。通过测量RGS 2、6和19 / GAIP对LPA刺激的肌醇磷酸生成的影响,进行了功能研究。在表达个别外源LPA受体的COS-7细胞中,RGS2和RSG19 / GAIP减弱了LPA1,LPA2或LPA3引发的信号传导,而RGS6仅抑制了LPA2受体引发的信号传导。在SKOV-3卵巢癌细胞中,RGS2而非RGS6或RGS19 / GAIP抑制LPA刺激的肌醇磷酸生成。相反,在CAOV-3细胞中,RGS19 / GAIP强烈减弱了LPA信号传导。因此,多种RGS蛋白在癌性和正常卵巢细胞来源的细胞中以明显不同的水平表达,并且已经鉴定出至少两种候选RGS转录物来解释所报道的卵巢癌细胞中LPA信号传导途径的调控。

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