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转染入人细胞的白喉毒素A链基因的调控表达:诱导癌细胞自杀的可能策略。

Regulated expression of a diphtheria toxin A-chain gene transfected into human cells: possible strategy for inducing cancer cell suicide.

作者信息

Maxwell I H, Maxwell F, Glode L M

出版信息

Cancer Res. 1986 Sep;46(9):4660-4.

PMID:3460697
Abstract

As an alternative to directing plant or bacterial toxins to surface receptors, we are investigating the possibility of killing tumor cells by the expression of an exogenously introduced toxin gene (i.e., cell suicide). Tissue-specific gene regulatory elements might thus be exploited to achieve selective killing. To assess the feasibility of such an approach, we have transfected human cells (HeLa, B-lymphoblastoid, and 293 cells) with plasmids containing the diphtheria toxin A-chain (DT-A) coding sequence. The presence of the DT-A sequence lowered the level of transient expression of chloramphenicol acetyltransferase from a cotransfected plasmid, pSV2cat. This expression level in B-cells was further diminished by the inclusion of an immunoglobulin enhancer in the DT-A plasmid. In cotransfection experiments with a DT-A plasmid lacking an enhancer, chloramphenicol acetyltransferase expression was much more strongly inhibited in 293 cells (which express adenovirus E1A and E1B products) than in the other cell types; furthermore, the presence of the DT-A sequence eliminated recovery of G418-resistant 293 cell transformants after transfection with a plasmid containing the neo selectable marker. These results suggest that cell-specific regulatory mechanisms can be exploited to achieve selective cell killing by expression of an introduced toxin gene.

摘要

作为将植物或细菌毒素导向表面受体的替代方法,我们正在研究通过表达外源引入的毒素基因来杀死肿瘤细胞的可能性(即细胞自杀)。因此,可以利用组织特异性基因调控元件来实现选择性杀伤。为了评估这种方法的可行性,我们用含有白喉毒素A链(DT-A)编码序列的质粒转染了人类细胞(HeLa细胞、B淋巴细胞样细胞和293细胞)。DT-A序列的存在降低了共转染质粒pSV2cat中氯霉素乙酰转移酶的瞬时表达水平。在DT-A质粒中加入免疫球蛋白增强子后,B细胞中的这种表达水平进一步降低。在使用缺乏增强子的DT-A质粒进行的共转染实验中,氯霉素乙酰转移酶的表达在293细胞(表达腺病毒E1A和E1B产物)中比在其他细胞类型中受到更强烈的抑制;此外,DT-A序列的存在消除了用含有新霉素选择标记的质粒转染后G418抗性293细胞转化体的恢复。这些结果表明,可以利用细胞特异性调控机制通过表达引入的毒素基因来实现选择性细胞杀伤。

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