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胆固醇共轭寡核苷酸结构变异对HIV-1抑制活性的影响。

Effect of structural variations in cholesteryl-conjugated oligonucleotides on inhibitory activity toward HIV-1.

作者信息

Farooqui F, Sarin P S, Sun D, Letsinger R L

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208-3113.

出版信息

Bioconjug Chem. 1991 Nov-Dec;2(6):422-6. doi: 10.1021/bc00012a007.

Abstract

A number of oligonucleotide analogues containing internucleoside phosphorothioate linkages and a covalently attached cholesteryl residue was synthesized and tested for activity against HIV-1 in cultures of Molt3 cells. Structural features important for high antiviral activity are the presence of a cholesteryl moiety, a run of terminal phosphorothioate groups, and the presence of nucleoside residues. An increase in length of the tether between cholesteryl and phosphorus from six to 14 atoms has no significant effect on antiviral activity, and up to one-half of the internucleoside links in a cholesteryl-conjugated phosphorothioate oligomer and one-third of the internucleoside links in a nonconjugated phosphorothioate can be replaced with phosphodiester links without much change in antiviral activity. However, replacement of nucleoside units in the oligomers by a simple analogue (-OCH2CH2CH2O-) yields inactive or very weakly active compounds, even in the presence of a cholesteryl group. Dose-response patterns for assays in which cholesteryl-conjugated oligomers are added to test cells either simultaneously or subsequently to viral infection are similar for homooligomer derivatives and for oligomers containing "antisense" sequences, suggesting a similarity in mode of action for the two classes of oligomers in this system.

摘要

合成了许多含有硫代磷酸酯键和共价连接的胆固醇残基的寡核苷酸类似物,并在Molt3细胞培养物中测试了它们对HIV-1的活性。对于高抗病毒活性而言重要的结构特征包括胆固醇部分的存在、一系列末端硫代磷酸酯基团的存在以及核苷残基的存在。胆固醇与磷之间的连接链长度从6个原子增加到14个原子,对抗病毒活性没有显著影响,并且在胆固醇共轭硫代磷酸酯寡聚物中,高达一半的核苷间连接以及在非共轭硫代磷酸酯中三分之一的核苷间连接可以被磷酸二酯连接取代,而抗病毒活性没有太大变化。然而,即使存在胆固醇基团,用简单类似物(-OCH2CH2CH2O-)取代寡聚物中的核苷单元也会产生无活性或活性非常弱的化合物。对于在病毒感染同时或之后将胆固醇共轭寡聚物添加到测试细胞中的试验,同聚物衍生物和含有“反义”序列的寡聚物的剂量反应模式相似,这表明在该系统中这两类寡聚物的作用方式相似。

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