质粒DNA转染复合物的制备及其荧光和电子光谱成像。

Scanning microscopy. Supplement Pub Date : 1996-01-01
M Malecki
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引用次数: 0

摘要

本项目的目的是开发必要的程序,研究受体介导的基因转移机制,通过集成显微镜。质粒DNA被整合到由聚赖氨酸和转铁蛋白组成的转染复合体中,核定位信号被偶联到复合体上。该复合物被呈递到培养的胶质瘤细胞。通过两种方法制备转染的DNA用于成像。在第一种方法中,四甲基罗丹明、纳米金和铁蛋白通过链亲和素连接到生物素化的质粒DNA上。用荧光显微镜研究了荧光衍生物在活细胞中的转运。然后,将选择的细胞快速冷冻固定。用能量过滤透射电镜观察转染DNA的超微结构分布。在第二种方法中,通过原位聚合酶链反应和原位杂交在冷冻固定细胞中检测未修饰的转染DNA。激光扫描荧光显微镜用四甲基罗丹明标记探针。为了通过电子波谱成像进行超微结构分析,用抗地高辛硼化抗体标记含有地高辛的探针。基于开发的程序,已经证明了转染复合体中核定位信号的存在导致了转染DNA的快速核输入。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preparation of plasmid DNA in transfection complexes for fluorescence and electron spectroscopic imaging.

The aim of this project was to develop procedures necessary to study mechanisms of receptor mediated gene transfer by means of integrated microscopy. Plasmid DNA was incorporated into a transfection complex consisting of poly(L)lysine and transferrin to which the nuclear localization signal was conjugated. This complex was presented to cultured glioma cells. Preparation of the transfected DNA for imaging was pursued by two methods. In the first method tetramethylrhodamine, nanogold, and ferritin were linked through streptavidin to the biotinylated plasmid DNA. Trafficking of the fluorescent derivatives was studied in living cells with fluorescence microscopy. Then, selected cells were rapidly cryo-immobilized. Ultra-structural distribution of the transfected DNA was imaged with energy filtering transmission electron microscopy. In the second method, the unmodified transfected DNA was detected in cryo-immobilized cells by in situ polymerase chain reaction and in situ hybridization. For laser scanning fluorescence microscopy probes were labeled with tetramethylrhodamine. For ultrastructural analysis by electron spectroscopic imaging, probes containing incorporated digoxigenin were labeled with anti-digoxigenin boronated antibodies. Based upon the developed procedures, it has been demonstrated that the presence of the nuclear localization signal in the transfection complex resulted in rapid nuclear import of the transfected DNA.

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