首页> 美国卫生研究院文献>The Journal of Biological Chemistry >The Lupane-type Triterpene 30-Oxo-calenduladiol Is a CCR5 Antagonist with Anti-HIV-1 and Anti-chemotactic Activities
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The Lupane-type Triterpene 30-Oxo-calenduladiol Is a CCR5 Antagonist with Anti-HIV-1 and Anti-chemotactic Activities

机译:Lupane型三萜30-氧-金盏花二醇是具有抗HIV-1和抗趋化活性的CCR5拮抗剂。

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摘要

The existence of drug-resistant human immunodeficiency virus (HIV) viruses in patients receiving antiretroviral treatment urgently requires the characterization and development of new antiretroviral drugs designed to inhibit resistant viruses and to complement the existing antiretroviral strategies against AIDS. We assayed several natural or semi-synthetic lupane-type pentacyclic triterpenes in their ability to inhibit HIV-1 infection in permissive cells. We observed that the 30-oxo-calenduladiol triterpene, compound 1, specifically impaired R5-tropic HIV-1 envelope-mediated viral infection and cell fusion in permissive cells, without affecting X4-tropic virus. This lupane derivative competed for the binding of a specific anti-CCR5 monoclonal antibody or the natural CCL5 chemokine to the CCR5 viral coreceptor with high affinity. 30-Oxo-calenduladiol seems not to interact with the CD4 antigen, the main HIV receptor, or the CXCR4 viral coreceptor. Our results suggest that compound 1 is a specific CCR5 antagonist, because it binds to the CCR5 receptor without triggering cell signaling or receptor internalization, and inhibits RANTES (regulated on activation normal T cell expressed and secreted)-mediated CCR5 internalization, intracellular calcium mobilization, and cell chemotaxis. Furthermore, compound 1 appeared not to interact with β-chemokine receptors CCR1, CCR2b, CCR3, or CCR4. Thereby, the 30-oxo-calenduladiol-associated anti-HIV-1 activity against R5-tropic virus appears to rely on the selective occupancy of the CCR5 receptor to inhibit CCR5-mediated HIV-1 infection. Therefore, it is plausible that the chemical structure of 30-oxo-calenduladiol or other related dihydroxylated lupane-type triterpenes could represent a good model to develop more potent anti-HIV-1 molecules to inhibit viral infection by interfering with early fusion and entry steps in the HIV life cycle.
机译:接受抗逆转录病毒治疗的患者中存在耐药性人类免疫缺陷病毒(HIV)病毒,迫切需要表征和开发旨在抑制耐药性病毒并补充现有针对AIDS的抗逆转录病毒策略的新型抗逆转录病毒药物。我们分析了几种天然或半合成的卢烷型五环三萜在抑制允许细胞中HIV-1感染的能力。我们观察到,30-氧-金盏花二醇三萜,化合物1,特别损害了R5-tropic HIV-1包膜介导的病毒感染和允许细胞中的细胞融合,而不影响X4-tropic病毒。该紫杉烷衍生物以高亲和力竞争特异性抗CCR5单克隆抗体或天然CCL5趋化因子与CCR5病毒共受体的结合。 30-氧-金盏花二醇似乎不与CD4抗原,主要的HIV受体或CXCR4病毒共受体相互作用。我们的结果表明,化合物1是一种特异性CCR5拮抗剂,因为它与CCR5受体结合而不触发细胞信号传导或受体内在化,并且抑制RANTES(受激活的正常T细胞表达和分泌的调节)介导的CCR5内在化,细胞内钙动员,和细胞趋化性。而且,化合物1似乎不与β趋化因子受体CCR1,CCR2b,CCR3或CCR4相互作用。因此,针对R5嗜性病毒的30-氧代-金盏花二醇相关的抗HIV-1活性似乎依赖于CCR5受体的选择性占有来抑制CCR5介导的HIV-1感染。因此,有可能的是,30-氧-金盏花二醇或其他相关的二羟基化的羽扇烷型三萜烯的化学结构可以代表一个好的模型,通过干扰早期融合和进入步骤来开发更有效的抗HIV-1分子以抑制病毒感染在艾滋病毒的生命周期中。

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