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四环素调控的表达,但减毒白喉毒素突变体无毒性。

Tetracycline-controlled expression but not toxicity of an attenuated diphtheria toxin mutant.

作者信息

Keyvani K, Baur I, Paulus W

机构信息

Department of Neuropathology, University of Erlangen, Germany.

出版信息

Life Sci. 1999;64(19):1719-24. doi: 10.1016/s0024-3205(99)00109-5.

Abstract

Tight transcriptional regulation of transferred bacterial toxin genes represents a potential approach for gene therapy of cancer. We have previously shown that the gene for wild type diphtheria toxin A chain (DT-A) placed under transcriptional control of a tetracycline-responsive promoter cannot be silenced due to its extreme toxicity. We now have explored a tetracycline-regulated DT-A mutant involving the histidine-21 catalytic domain (H21A) which shows 120-fold reduced ADP-ribosylation activity. Cellular toxicity was determined in NIH 3T3 fibroblasts and C6 glioma cells after triple transfections with the DT-A construct, the Tet transactivator gene and a luciferase plasmid as the reporter. Marked toxicity, i.e. reduced luciferase expression by more than 98%, was observed both in the absence and in the presence of tetracycline, suggesting leakiness of the Tet system, and absence of regulation, possibly due to inhibition of DT-A synthesis by activated DT-A itself. In contrast, the lacZ gene which was driven by the same promoter could be regulated by up to 49-fold. We conclude that (1) expression but not toxicity of the DT-A mutant can be sufficiently controlled by a tetracycline-responsive promoter, and (2) tight regulation of transferred genes encoding toxins remains a challenge for gene therapy of cancer.

摘要

对转移的细菌毒素基因进行严格的转录调控是癌症基因治疗的一种潜在方法。我们之前已经表明,置于四环素反应性启动子转录控制下的野生型白喉毒素A链(DT-A)基因因其极端毒性而无法沉默。我们现在探索了一种涉及组氨酸-21催化结构域(H21A)的四环素调控DT-A突变体,其ADP-核糖基化活性降低了120倍。在用DT-A构建体、Tet反式激活因子基因和荧光素酶质粒作为报告基因进行三次转染后,在NIH 3T3成纤维细胞和C6胶质瘤细胞中测定细胞毒性。在四环素存在和不存在的情况下均观察到明显的毒性,即荧光素酶表达降低超过98%,这表明Tet系统存在渗漏且缺乏调控,可能是由于活化的DT-A本身抑制了DT-A的合成。相比之下,由同一启动子驱动的lacZ基因可被调控高达49倍。我们得出结论:(1)DT-A突变体的表达而非毒性可通过四环素反应性启动子得到充分控制;(2)对编码毒素的转移基因进行严格调控仍然是癌症基因治疗面临的一项挑战。

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