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未修饰的、硫代磷酸化的和脂质体包裹的寡核苷酸对流感病毒RNA聚合酶和核蛋白基因表达的抑制作用

Inhibition of influenza virus RNA polymerase and nucleoprotein genes expression by unmodified, phosphorothioated, and liposomally encapsulated oligonucleotides.

作者信息

Hatta T, Nakagawa Y, Takai K, Nakada S, Yokota T, Takaku H

机构信息

Department of Industrial Chemistry, Chiba Institute of Technology, Tsudanuma, Narashino, Japan.

出版信息

Biochem Biophys Res Commun. 1996 Jun 14;223(2):341-6. doi: 10.1006/bbrc.1996.0896.

Abstract

We have demonstrated that antisense phosphodiester (ODNs) and phosphorothioate oligonucleotides (S-ODNs) inhibit CAT (chloramphenicol acetyltransferase) protein expression in the clone 76 cell line, which is a derivative of the murine C127 cell line. This cell line expresses the influenza virus RNA polymerase and nucleoprotein (NP) genes in response to treatment with dexamethasone. Phosphodiester, phosphorothioate, and liposomally encapsulated oligonucleotides with four target sites (PB1, PB2, PA, and NP) were synthesized and tested for inhibitory effects by a CAT-ELISA assay using the clone 76 cell line. The ODNs and S-ODNs complementary to the sites of the PB2-AUG and PA-AUG initiation codons showed highly inhibitory effects. On the other hand, the inhibitory effect of the S-ODNs targeted to PB1 was considerably decreased in comparison with the other three target sites. Liposome encapsulation afforded oligomer protection in serum-containing medium and substantially improved cellular accumulation. The liposomal encapsulated oligonucleotides exhibited higher inhibitory activity than the free oligonucleotides. The activities of the unmodified oligonucleotides are effectively enhanced by using the liposomal carrier.

摘要

我们已经证明,反义磷酸二酯(ODN)和硫代磷酸寡核苷酸(S-ODN)可抑制克隆76细胞系中氯霉素乙酰转移酶(CAT)蛋白的表达,该细胞系是小鼠C127细胞系的衍生物。该细胞系在用地塞米松处理后会表达流感病毒RNA聚合酶和核蛋白(NP)基因。合成了具有四个靶位点(PB1、PB2、PA和NP)的磷酸二酯、硫代磷酸酯和脂质体包裹的寡核苷酸,并使用克隆76细胞系通过CAT-ELISA测定法测试其抑制作用。与PB2-AUG和PA-AUG起始密码子位点互补的ODN和S-ODN显示出高度抑制作用。另一方面,与其他三个靶位点相比,靶向PB1的S-ODN的抑制作用明显降低。脂质体包裹在含血清培养基中提供了寡聚物保护,并显著改善了细胞摄取。脂质体包裹的寡核苷酸比游离寡核苷酸表现出更高的抑制活性。使用脂质体载体可有效增强未修饰寡核苷酸的活性。

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