Atanes Patricio, Ruz-Maldonado Inmaculada, Hawkes Ross, Liu Bo, Persaud Shanta J, Amisten Stefan
Cell Physiol Biochem. 2018;45(2):656-666. doi: 10.1159/000487159. Epub 2018 Jan 31.
BACKGROUND/AIMS: CRISPR-Cas9, a RNA-guided targeted genome editing tool, has revolutionized genetic engineering by offering the ability to precisely modify DNA. GPRC5B is an orphan receptor belonging to the group C family of G protein-coupled receptors (GPCRs). In this study, we analysed the functional roles of the Gprc5b receptor in MIN6 β-cells using CRISPR-Cas9 and transient over-expression of Gprc5b.
The optimal transfection reagent for use in MIN6 β-cells was determined by analysing efficiency of GFP plasmid delivery by cell sorting. A MIN6 β-cell line in which Gprc5b expression was knocked down (Gprc5b KD) was generated using CRISPR-Cas9 technology. Gprc5b receptor mRNA expression, proliferation, apoptosis, Cignal 45-Pathway Reporter Array signalling and western blot assays were carried out using Gpcr5b KD MIN6 β-cells that had been transiently transfected with different concentrations of mouse Gprc5b plasmid to over-express Gprc5b.
JetPRIME® was the best candidate for MIN6 β-cell transfection, providing approximately 30% transfection efficiency. CRISPR-Cas9 technology targeting Gprc5b led to stable knock-down of this receptor in MIN6 β-cells and its re-expression induced proliferation and potentiated cytokine- and palmitate-induced apoptosis. The Cignal 45 Reporter analysis indicated Gprc5b-dependent regulation of apoptotic and proliferative pathways, and western blotting confirmed activation of signalling via TGF-β and IFNγ.
This study provides evidence of CRISPR-Cas9 technology being used to down-regulate Gprc5b expression in MIN6 β-cells. This strategy allowed us to identify signalling pathways linking GPRC5B receptor expression to β-cell proliferation and apoptosis.
背景/目的:CRISPR-Cas9是一种RNA引导的靶向基因组编辑工具,通过提供精确修饰DNA的能力,彻底改变了基因工程。GPRC5B是一种孤儿受体,属于G蛋白偶联受体(GPCR)C家族。在本研究中,我们使用CRISPR-Cas9和Gprc5b的瞬时过表达分析了Gprc5b受体在MIN6β细胞中的功能作用。
通过细胞分选分析GFP质粒递送效率,确定用于MIN6β细胞的最佳转染试剂。使用CRISPR-Cas9技术构建了Gprc5b表达被敲低的MIN6β细胞系(Gprc5b KD)。使用已用不同浓度小鼠Gprc5b质粒瞬时转染以过表达Gprc5b的Gpcr5b KD MIN6β细胞进行Gprc5b受体mRNA表达、增殖、凋亡、Cignal 45通路报告基因阵列信号传导和蛋白质印迹分析。
JetPRIME®是MIN6β细胞转染的最佳候选试剂,转染效率约为30%。靶向Gprc5b的CRISPR-Cas9技术导致该受体在MIN6β细胞中稳定敲低,其重新表达诱导增殖并增强细胞因子和棕榈酸酯诱导的凋亡。Cignal 45报告基因分析表明Gprc5b对凋亡和增殖途径有依赖性调节,蛋白质印迹证实通过TGF-β和IFNγ激活信号传导。
本研究提供了CRISPR-Cas9技术用于下调MIN6β细胞中Gprc5b表达的证据。该策略使我们能够鉴定将GPRC5B受体表达与β细胞增殖和凋亡联系起来的信号通路。