Beijing Tongren Eye Center, Beijing Tongren Hospital, Capital Medical University, Beijing Key Laboratory of Ophthalmology & Visual Sciences, Beijing 100730, China.
Neural Regen Res. 2013 Apr 15;8(11):1031-40. doi: 10.3969/j.issn.1673-5374.2013.11.009.
Neurotrophin-3 (NT-3) can promote the repair of central nervous system and retinal damage. In previous reports, NT-3 has been expressed by viral vectors. However, plasmid vectors have a safer profile compared with viral vectors in clinical studies. This study recombined amplified human retinal NT-3 with a eukaryotic expression plasmid containing green fluorescent protein (GFP) to construct an NT-3 expression plasmid, pEGFP-N1-NT-3. The transfection efficiency 48 hours after pEGFP-N1-NT-3 transfection to 293T cells was 50.06 ± 2.78%. Abundant NT-3-GFP was expressed in 293T cells as observed by fluorescence microscopy, suggesting the construct pEGFP-N1-NT-3 effectively expressed and secreted NT-3-GFP. Secretory vesicles containing NT-3-GFP were observed in a constant location in cells by laser scan confocal microscopy, indicating the expression and secretion processes of NT-3 in eukaryotic cells were in accordance with the physical synthesis processes of secreted proteins. Western blot assay showed that pro-NT-3-GFP had a molecular weight of 56 kDa, further confirming NT-3-GFP expression. At 48 hours after transfection, the concentration of NT-3 in culture medium was 22.3 ng/mL, suggesting NT-3 produced by pEGFP-N1-NT-3 was efficiently secreted. This study constructed a human retinal-derived NT-3 eukaryotic expression plasmid that efficiently expressed and secreted NT-3.
神经营养因子 3(NT-3)可促进中枢神经系统和视网膜损伤的修复。在以前的报告中,NT-3 已通过病毒载体表达。然而,在临床研究中,与病毒载体相比,质粒载体具有更安全的特性。本研究将扩增的人视网膜 NT-3 与含有绿色荧光蛋白(GFP)的真核表达质粒重组,构建了 NT-3 表达质粒 pEGFP-N1-NT-3。转染 pEGFP-N1-NT-3 后 293T 细胞 48 小时的转染效率为 50.06±2.78%。荧光显微镜观察到 293T 细胞中大量表达 NT-3-GFP,表明构建的 pEGFP-N1-NT-3 有效地表达和分泌了 NT-3-GFP。激光扫描共聚焦显微镜观察到细胞中含有 NT-3-GFP 的分泌小泡在固定位置存在,表明 NT-3 在真核细胞中的表达和分泌过程符合分泌蛋白的物理合成过程。Western blot 分析显示 pro-NT-3-GFP 的分子量为 56 kDa,进一步证实了 NT-3-GFP 的表达。转染 48 小时后,培养基中 NT-3 的浓度为 22.3ng/mL,表明 pEGFP-N1-NT-3 产生的 NT-3 得到了有效分泌。本研究构建了一种高效表达和分泌 NT-3 的人视网膜源性 NT-3 真核表达质粒。