人甲型肝炎病毒3C蛋白酶与双功能自杀蛋白FCU1基因在双顺反子载体中共表达的细胞毒性作用

Cytotoxic effect of co-expression of human hepatitis A virus 3C protease and bifunctional suicide protein FCU1 genes in a bicistronic vector.

作者信息

Komissarov Alexey, Demidyuk Ilya, Safina Dina, Roschina Marina, Shubin Andrey, Lunina Nataliya, Karaseva Maria, Kostrov Sergey

机构信息

Laboratory of Protein Engineering, Institute of Molecular Genetics, Russian Academy of Science, 2 Kurchatova Sq., Moscow, Russia, 123182.

出版信息

Mol Biol Rep. 2017 Aug;44(4):323-332. doi: 10.1007/s11033-017-4113-4. Epub 2017 Jul 26.

Abstract

Recent reports on various cancer models demonstrate a great potential of cytosine deaminase/5-fluorocytosine suicide system in cancer therapy. However, this approach has limited success and its application to patients has not reached the desirable clinical significance. Accordingly, the improvement of this suicide system is an actively developing trend in gene therapy. The purpose of this study was to explore the cytotoxic effect observed after co-expression of hepatitis A virus 3C protease (3C) and yeast cytosine deaminase/uracil phosphoribosyltransferase fusion protein (FCU1) in a bicistronic vector. A set of mono- and bicistronic plasmid constructs was generated to provide individual or combined expression of 3C and FCU1. The constructs were introduced into HEK293 and HeLa cells, and target protein synthesis as well as the effect of 5-fluorocytosine on cell death and the time course of the cytotoxic effect was studied. The obtained vectors provide for the synthesis of target proteins in human cells. The expression of the genes in a bicistronic construct provide for the cytotoxic effect comparable to that observed after the expression of genes in monocistronic constructs. At the same time, co-expression of FCU1 and 3C recapitulated their cytotoxic effects. The combined effect of the killer and suicide genes was studied for the first time on human cells in vitro. The integration of different gene therapy systems inducing cell death (FCU1 and 3C genes) in a bicistronic construct allowed us to demonstrate that it does not interfere with the cytotoxic effect of each of them. A combination of cytotoxic genes in multicistronic vectors can be used to develop pluripotent gene therapy agents.

摘要

近期有关各种癌症模型的报告表明,胞嘧啶脱氨酶/5-氟胞嘧啶自杀系统在癌症治疗中具有巨大潜力。然而,这种方法取得的成功有限,其在患者中的应用尚未达到理想的临床意义。因此,改进这种自杀系统是基因治疗中一个积极发展的趋势。本研究的目的是探讨在双顺反子载体中共同表达甲型肝炎病毒3C蛋白酶(3C)和酵母胞嘧啶脱氨酶/尿嘧啶磷酸核糖转移酶融合蛋白(FCU1)后所观察到的细胞毒性作用。构建了一组单顺反子和双顺反子质粒构建体,以实现3C和FCU1的单独或联合表达。将这些构建体导入HEK293和HeLa细胞,研究了靶蛋白的合成以及5-氟胞嘧啶对细胞死亡的影响和细胞毒性作用的时间进程。所获得的载体可在人细胞中合成靶蛋白。双顺反子构建体中基因的表达产生的细胞毒性作用与单顺反子构建体中基因表达后所观察到的相当。同时,FCU1和3C的共同表达重现了它们的细胞毒性作用。首次在体外人细胞上研究了杀伤基因和自杀基因的联合作用。在双顺反子构建体中整合不同的诱导细胞死亡的基因治疗系统(FCU1和3C基因)使我们能够证明这不会干扰它们各自的细胞毒性作用。多顺反子载体中细胞毒性基因的组合可用于开发多能基因治疗剂。

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