Zhang Wei Wei, Shao Shu Li, Pan Yang, Li Shan Shan
College of Life Sciences, Agriculture and Forestry.
Heilongjiang Provincial Key Laboratory of Resistance Gene Engineering and Protection of Biodiversity in Cold Areas; Qiqihar University, Qiqihar 161006.
Zhongguo Ying Yong Sheng Li Xue Za Zhi. 2019 Jan;35(1):5-8. doi: 10.12047/j.cjap.5709.2019.002.
To investigate the expression of EGR1 gene and the localization of EGR1 protein in bovine skeletal muscle-derived satellite cells (MDSCs), as well as to investigate the mechanism that EGR1 protein enters the nucleus.
Bovine MDSCs were cultured in differentiation medium for 1 day, 3 days and 5 days, respectively, and each group was triplicate. The expression of EGR1 gene and the localization of EGR1 protein were studied at different differentiation period in MDSCs by qRT-PC and Western blot. Moreover, the changes on the expression of endogenous EGR1 gene and EGR1 proteins were explored by CRISPRi, site-directed mutagenesis and laser confocal method.
The results from the qRT-PCR and Western blot showed that the expressions of EGR1 gene on transcription level and translation level were significantly higher in differentiated cells than those in undifferentiated cells. The highest expression was found on the third day after the differentiation, and then began to decline. Immunofluorescence assays showed that EGR1 proteins were preferentially expressed in differentiated MDSCs, and increased along with the increase of number of myotubes. Confocal observation revealed that some EGR1 proteins were transferred into the nucleus in the differentiation of cells, however, the EGR1 proteins would not be detected in the differentiated MDSCs nuclei if a site directed mutagenesis (serine) on EGR1 protein occurred.
During the differentiation of bovine skeletal muscle satellite cells, the transcriptional level of EGR1 gene is increased, and some EGR1 proteins are transferred into the nucleus. The serine phosphorylation at position 533 of the C terminal of EGR1 protein is necessary for the nucleus transfer.
研究早期生长反应蛋白1(EGR1)基因在牛骨骼肌来源卫星细胞(MDSCs)中的表达及EGR1蛋白的定位,并探讨EGR1蛋白进入细胞核的机制。
将牛MDSCs分别在分化培养基中培养1天、3天和5天,每组设置3个重复。通过qRT-PCR和蛋白质免疫印迹法研究MDSCs在不同分化时期EGR1基因的表达及EGR1蛋白的定位。此外,采用CRISPRi、定点诱变和激光共聚焦方法探讨内源性EGR1基因和EGR1蛋白表达的变化。
qRT-PCR和蛋白质免疫印迹结果显示,分化细胞中EGR1基因在转录水平和翻译水平的表达均显著高于未分化细胞。分化后第3天表达最高,随后开始下降。免疫荧光分析表明,EGR1蛋白在分化的MDSCs中优先表达,并随着肌管数量的增加而增加。共聚焦观察显示,在细胞分化过程中一些EGR1蛋白转移到细胞核中,然而,如果EGR1蛋白发生定点诱变(丝氨酸),则在分化的MDSCs细胞核中检测不到EGR1蛋白。
在牛骨骼肌卫星细胞分化过程中,EGR1基因转录水平升高,部分EGR1蛋白转移到细胞核中。EGR1蛋白C末端第533位丝氨酸磷酸化是其入核所必需的。