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Construction of a fusion protein expression vector MK-EGFP and its subcellular localization in different carcinoma cell lines.

机译:融合蛋白表达载体MK-EGFP的构建及其在不同癌细胞系中的亚细胞定位。

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AIM: To construct an expression plasmid encoding human wild-type midkine (MK) and enhanced green fluorescence protein (EGFP) fusion protein (MK-EGFP), and to analyze the subcellular localization of MK in different carcinoma cell lines. METHODS: Two kinds of MK coding sequences with or without signal peptide were cloned into plasmid pEGFP-N2, and the recombinant plasmids constructed were introduced into HepG2, MCF7 and DU145 cells, respectively, by transfection. With the help of laser scanning confocal microscopy, the expression and subcellular localization of MK-GFP fusion protein could be detected. RESULTS: Compared with the GFP control, in which fluorescence was detected diffusely over the entire cell body except in the nucleolus, both kinds of fusion protein MK-GFP were localized exclusively to the nucleus and accumulated in the nucleolus in the three kinds of cancer cell lines. CONCLUSION: This study reveals the specific nucleolar translocation independent of signal peptide, which may be involved in the mechanism that MK works. It provides valuable evidence for further study on the functions of MK in nucleus and its possible mechanisms, in which ribosomal RNA transcription and ribosome assembly are involved.
机译:目的:构建编码人野生型中期因子(MK)和增强型绿色荧光蛋白(EGFP)融合蛋白(MK-EGFP)的表达质粒,并分析MK在不同癌细胞系中的亚细胞定位。方法:将两种有或无信号肽的MK编码序列克隆到质粒pEGFP-N2中,并将构建的重组质粒分别转染到HepG2,MCF7和DU145细胞中。借助于激光扫描共聚焦显微镜,可以检测MK-GFP融合蛋白的表达和亚细胞定位。结果:与GFP对照相比,在核细胞中除了核仁以外,在整个细胞体中均检测到荧光,这两种融合蛋白MK-GFP仅局限在核中,并在三种癌细胞的核仁中积累。线。结论:这项研究揭示了不依赖信号肽的特定核仁易位,这可能与MK起作用的机制有关。它为进一步研究MK在细胞核中的功能及其可能的机制提供了有价值的证据,其中涉及核糖体RNA转录和核糖体装配。

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