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新型蝎毒素肽衍生物 Kn2-7 的抗 HIV-1 活性。

Anti-HIV-1 activity of a new scorpion venom peptide derivative Kn2-7.

机构信息

State Key Laboratory of Virology, College of Life Sciences, Wuhan University, Wuhan, People's Republic of China.

出版信息

PLoS One. 2012;7(4):e34947. doi: 10.1371/journal.pone.0034947. Epub 2012 Apr 19.

Abstract

For over 30 years, HIV/AIDS has wreaked havoc in the world. In the absence of an effective vaccine for HIV, development of new anti-HIV agents is urgently needed. We previously identified the antiviral activities of the scorpion-venom-peptide-derived mucroporin-M1 for three RNA viruses (measles viruses, SARS-CoV, and H5N1). In this investigation, a panel of scorpion venom peptides and their derivatives were designed and chosen for assessment of their anti-HIV activities. A new scorpion venom peptide derivative Kn2-7 was identified as the most potent anti-HIV-1 peptide by screening assays with an EC(50) value of 2.76 µg/ml (1.65 µM) and showed low cytotoxicity to host cells with a selective index (SI) of 13.93. Kn2-7 could inhibit all members of a standard reference panel of HIV-1 subtype B pseudotyped virus (PV) with CCR5-tropic and CXCR4-tropic NL4-3 PV strain. Furthermore, it also inhibited a CXCR4-tropic replication-competent strain of HIV-1 subtype B virus. Binding assay of Kn2-7 to HIV-1 PV by Octet Red system suggested the anti-HIV-1 activity was correlated with a direct interaction between Kn2-7 and HIV-1 envelope. These results demonstrated that peptide Kn2-7 could inhibit HIV-1 by direct interaction with viral particle and may become a promising candidate compound for further development of microbicide against HIV-1.

摘要

三十多年来,艾滋病在全球肆虐。由于缺乏有效的 HIV 疫苗,急需开发新的抗 HIV 药物。我们之前已经发现了蝎毒肽衍生的 mucroporin-M1 对三种 RNA 病毒(麻疹病毒、SARS-CoV 和 H5N1)的抗病毒活性。在这项研究中,设计并选择了一组蝎毒液肽及其衍生物,以评估它们的抗 HIV 活性。通过筛选实验,发现一种新的蝎毒液肽衍生物 Kn2-7 是最有效的抗 HIV-1 肽,EC50 值为 2.76µg/ml(1.65µM),对宿主细胞的细胞毒性低,选择性指数(SI)为 13.93。Kn2-7 可以抑制所有标准参考面板的 HIV-1 亚型 B 假型病毒(PV)成员,包括 CCR5 嗜性和 CXCR4 嗜性的 NL4-3 PV 株。此外,它还抑制了 HIV-1 亚型 B 病毒的 CXCR4 嗜性复制型。通过 Octet Red 系统进行的 Kn2-7 与 HIV-1 PV 的结合实验表明,抗 HIV-1 活性与 Kn2-7 与 HIV-1 包膜之间的直接相互作用有关。这些结果表明,肽 Kn2-7 可以通过与病毒颗粒的直接相互作用抑制 HIV-1,可能成为进一步开发抗 HIV-1 微生态制剂的有前途的候选化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c54/3334916/ff48025f0db1/pone.0034947.g001.jpg

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