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5'-连接的胆固醇硫代磷酸酯寡脱氧核苷酸在体外抑制HIV-1和HIV-2的合胞体形成及感染的作用模式

Mode of action of 5'-linked cholesteryl phosphorothioate oligodeoxynucleotides in inhibiting syncytia formation and infection by HIV-1 and HIV-2 in vitro.

作者信息

Stein C A, Pal R, DeVico A L, Hoke G, Mumbauer S, Kinstler O, Sarngadharan M G, Letsinger R L

机构信息

Department of Medical Oncology, Columbia University College of Physicians and Surgeons, New York, New York 10032.

出版信息

Biochemistry. 1991 Mar 5;30(9):2439-44. doi: 10.1021/bi00223a020.

Abstract

A phosphorothioate homocytidine 10-mer containing a cholesteryl moiety covalently linked to the 5'-end (Chol-SdC10) inhibited syncytium formation in susceptible T cells induced by HIV-1 and HIV-2. The syncytium inhibition effect was minimal with unmodified cytidine homopolymer of the same net charge. Chol-SdC10 was shown to protect CEM cells against infection by cell-free HIV-1 particles without any apparent toxicity to the growth of CD4+ T cells. The DNA polymerase activity of the purified reverse transcriptase (RT) of HIV-1 was markedly inhibited by Chol-SdC10 but the effect on the RNase H activity of RT was minimal. Analysis of the kinetics of reverse transcriptase inhibition mediated by the drug revealed that the inhibition at a higher concentration was competitive with respect to template primer binding and noncompetitive at lower concentrations. Chol-SdC10 also partially blocked the binding of gp120 to CD4 in a solid-phase ELISA. These results confirm that the anti-HIV activity of phosphorothioate cytidine homopolymers increases markedly by covalent modification with the cholesteryl moiety at the 5'-end and demonstrates that the cytoprotective effect is manifested at multiple steps in the virus life cycle. These steps include inhibition of retroviral replication activity as well as the binding and fusion of HIV with CD4+ T cells.

摘要

一种硫代磷酸酯同型胞嘧啶10聚体,其5'-端共价连接有胆固醇部分(Chol-SdC10),可抑制HIV-1和HIV-2诱导的易感T细胞中的合胞体形成。对于具有相同净电荷的未修饰胞嘧啶均聚物,合胞体抑制作用最小。Chol-SdC10被证明可保护CEM细胞免受无细胞HIV-1颗粒的感染,且对CD4 + T细胞的生长无明显毒性。HIV-1纯化逆转录酶(RT)的DNA聚合酶活性被Chol-SdC10显著抑制,但对RT的核糖核酸酶H活性的影响最小。对该药物介导的逆转录酶抑制动力学分析表明,较高浓度下的抑制作用相对于模板引物结合是竞争性的,而在较低浓度下是非竞争性的。Chol-SdC10在固相ELISA中也部分阻断了gp120与CD4的结合。这些结果证实,硫代磷酸酯胞嘧啶均聚物的抗HIV活性通过5'-端胆固醇部分的共价修饰而显著增加,并表明细胞保护作用在病毒生命周期的多个步骤中得以体现。这些步骤包括抑制逆转录病毒复制活性以及HIV与CD4 + T细胞的结合和融合。

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