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首页> 外文期刊>Molecular and Cellular Probes: The Location, Diagnosis and Monitoring of Disease by Specific Molecules and Cell Lines >Establishment of canine macrophages stably expressing GFP-tagged canine LC3 protein for effectively detecting autophagy
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Establishment of canine macrophages stably expressing GFP-tagged canine LC3 protein for effectively detecting autophagy

机译:建立甘氨酸巨噬细胞稳定表达GFP标记的犬LC3蛋白,以有效地检测自噬

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摘要

Autophagy plays a crucial role in eliminating protein aggregates, damaged organelles and invading pathogens. Genetically engineered cell line stably expressing green fluorescent protein (GFP)-tagged microtubule-associated protein light chain 3 (LC3) is extensively used to test autophagy through observing GFP puncta formation in the cells by fluorescence imaging. However, canine LC3 (cLC3) gene has not been cloned, therefore, GFP-tagged canine LC3 (GFP-cLC3) detection system has not been established. To generate GFP-cLC3 stably expressing canine-derived macrophages, the cLC3 cDNA was first amplified by RT-PCR and inserted into pEGFP-C1 plasmid to create GFP-cLC3 gene fusion. This genetic element was then transducted into canine macrophages mediated by lentivirus vector to generate the canine macrophages stably expressing fusion protein. Results showed that the sequence of cLC3 cloned in this study is highly homologous with other animals (80-95% homology). Phenotypic and functional analysis of these engineered cells revealed that GFP-cLC3 was indeed stably expressed and rapamycin or starvation can effectively induce GFP puncta formation in the cells, indicative of autophagosome formation. These GFP-cLC3-expressing cells may thus be useful to study autophagy in canine.
机译:自噬在消除蛋白质聚集体,受损的细胞器和入侵病原体中起着至关重要的作用。遗传工程化细胞系稳定表达绿色荧光蛋白(GFP)的微管相关蛋白质轻链3(LC3)广泛地用于通过荧光成像观察细胞中的GFP斑块形成来试验自噬。然而,犬LC3(CLC3)基因尚未克隆,因此,尚未建立GFP标记的犬LC3(GFP-CLC3)检测系统。为了产生稳定表达甘氨酸衍生的巨噬细胞的GFP-CLC3,首先通过RT-PCR扩增CLC3 cDNA,并插入PEGFP-C1质粒中以产生GFP-CLC3基因融合。然后将该遗传元件转置成被慢病毒载体介导的犬巨噬细胞以产生稳定表达融合蛋白的犬巨噬细胞。结果表明,该研究中克隆的CLC3序列与其他动物(80-95%同源性)高度同源。这些工程化细胞的表型和功能分析表明,GFP-CLC3实际上是稳定表达的,雷帕霉素或饥饿能够有效地诱导细胞中的GFP斑度形成,这表明自噬体形成。因此,这些GFP-CLC 3的细胞可能可用于研究犬类的自噬。

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