Kim Young-Eun, Park Jeong-A, Park Sang-Kyu, Kang Ho-Bum, Kwon Hyung-Joo, Lee Younghee
Department of Biochemistry, College of Natural Sciences, Republic of Korea ; Biotechnology Research Institute, Chungbuk National University, Cheongju 361-763, Republic of Korea.
Department of Biochemistry, College of Natural Sciences, Republic of Korea.
Dev Reprod. 2013 Dec;17(4):379-87. doi: 10.12717/DR.2013.17.4.379.
Embryonic stem (ES) cells can self-renew and differentiate to various cells depending on the culture condition. Although ES cells are a good model for cell type specification and can be useful for application in clinics in the future, studies on ES cells have many experimental restraints including low transfection efficiency and transgene expression. Here, we observed that transgene expression after transfection was enhanced by treatment with histone deacetylse (HDAC) inhibitors such as trichostatin A, sodium butyrate, and valproic acid. Transfection was performed using conventional transfection reagents with a retroviral vector encoding GFP under the control of CMV promoter as a reporter. Treatment of ES cells with HDAC inhibitors after transfection increased population of GFP positive cells up to 180% compared with untreated control. ES cells showed normal expression of stem cell markers after treatment with HDAC inhibitors. Transgene expression was further enhanced by modifying transfection procedure. GFP positive cells selected after transfection were proved to have the stem cell properties. Our improved protocol for enhanced gene delivery and expression in mouse ES cells without hampering ES cell properties will be useful for study and application of ES cells.
胚胎干细胞(ES细胞)能够自我更新,并根据培养条件分化为各种细胞。尽管ES细胞是细胞类型特异性研究的良好模型,且未来可能在临床应用中发挥作用,但对ES细胞的研究存在许多实验限制,包括转染效率低和转基因表达问题。在此,我们观察到,用曲古抑菌素A、丁酸钠和丙戊酸等组蛋白去乙酰化酶(HDAC)抑制剂处理后,转染后的转基因表达得到增强。使用常规转染试剂,以编码绿色荧光蛋白(GFP)的逆转录病毒载体作为报告基因,该载体在巨细胞病毒(CMV)启动子的控制下,进行转染。转染后用HDAC抑制剂处理ES细胞,与未处理的对照相比,GFP阳性细胞群体增加了180%。用HDAC抑制剂处理后,ES细胞显示出干细胞标志物的正常表达。通过改进转染程序,转基因表达进一步增强。转染后筛选出的GFP阳性细胞被证明具有干细胞特性。我们改进的在不影响ES细胞特性的情况下增强小鼠ES细胞基因传递和表达的方案,将有助于ES细胞的研究和应用。