电场介导的基因转移(电穿孔)到小鼠朋友和人K562红白血病细胞

Demetrios A. Spandidos
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引用次数: 22

摘要

电穿孔技术是一种电场介导的基因转移技术,是一种在小鼠Friend和人K562红白血病细胞中导入和表达基因的方法。在Moloney小鼠肉瘤病毒长末端重复启动子/增强子序列的转录控制下,利用携带氨基糖苷磷酸转移酶(aph)基因的重组质粒Homer 6,测定了Friend和K562细胞中基因的长期(稳定)表达。检测DNA浓度、初始场强、受体细胞浓度、预选择表达时间等参数,获得最佳转染频率。在单纯疱疹病毒直接早期5基因启动子/增强子序列的转录控制下,利用携带氯霉素乙酰转移酶基因的质粒pLW4进行了短期(瞬时)表达检测。获得最大稳定转化频率的条件与小鼠和人红白血病细胞系中获得最高瞬时基因表达的条件相似。在最佳条件下,与磷酸钙技术相比,电穿孔对两种类型的细胞的转染频率和瞬时表达水平提高了约10倍。由于Friend和K562细胞都可以在体外诱导分化,因此测量导入这些细胞的基因的瞬时或稳定表达水平可能有助于研究红系途径基因的发育调节。
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Electric field-mediated gene transfer (electroporation) into mouse friend and human K562 erythroleukemic cells

Electroporation, the technique of electric field mediated gene transfer, was evaluated as a means of introducing and expressing genes into mouse Friend and human K562 erythroleukemic cells. Long-term (stable) gene expression in both Friend and K562 cells was measured using the recombinant plasmid Homer 6, which carries the aminoglycoside phosphotransferase (aph) gene as a selectable marker under the transcriptional control of the Moloney murine sarcoma virus long terminal repeat promoter/enhancer sequences. Parameters such as the DNA concentration, the initial field strength, the concentration of recipient cells, and the preselection expression time were examined to obtain optimal transfection frequencies. Short-term (transient) expression was also examined using the plasmid pLW4, which carries the chloramphenicol acetyltransferase gene under the transcriptional control of herpes simplex virus immediate early 5 gene promoter/enhancer sequences. Conditions that gave maximal stable transformation frequency were similar to those giving highest transient gene expression in the mouse and human erythroleukemic cell lines. Under optimal conditions, electroporation gave about ten times higher transfection frequencies and levels of transient expression for both types of cells when compared with the calcium phosphate technique. Because both Friend and K562 cells can be induced to differentiate in vitro, measurement of transient or stable expression levels for genes introduced into these cells may prove to be useful in the study of developmental regulation of genes from the erythroid pathway.

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