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Soybean-derived Bowman-Birk Inhibitor (BBI) Inhibits HIV Replication in Macrophages

机译:大豆衍生的Bowman-Birk抑制剂(BBI)抑制巨噬细胞的HIV复制

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The Bowman-Birk inhibitor (BBI), a soybean-derived protease inhibitor, is known to have anti-inflammatory effect in both in vitro and in vivo systems. Macrophages play a key role in inflammation and immune activation, which is implicated in HIV disease progression. Here, we investigated the effect of BBI on HIV infection of peripheral blood monocyte-derived macrophages. We demonstrated that BBI could potently inhibit HIV replication in macrophages without cytotoxicity. Investigation of the mechanism(s) of BBI action on HIV showed that BBI induced the expression of IFN-β and multiple IFN stimulated genes (ISGs), including Myxovirus resistance protein 2 (Mx2), 2',5'-oligoadenylate synthetase (OAS-1), Virus inhibitory protein (viperin), ISG15 and ISG56. BBI treatment of macrophages also increased the expression of several known HIV restriction factors, including APOBEC3F, APOBEC3G and tetherin. Furthermore, BBI enhanced the phosphorylation of IRF3, a key regulator of IFN-β. The inhibition of IFN-β pathway by the neutralization antibody to type I IFN receptor (Anti-IFNAR) abolished BBI-mediated induction of the anti-HIV factors and inhibition of HIV in macrophages. These findings that BBI could activate IFN-β-mediated signaling pathway, initialize the intracellular innate immunity in macrophages and potently inhibit HIV at multiple steps of viral replication cycle indicate the necessity to further investigate BBI as an alternative and cost-effective anti-HIV natural product.
机译:已知鲍曼 - 伯克抑制剂(BBI),大豆衍生的蛋白酶抑制剂在体外和体内系统中具有抗炎作用。巨噬细胞在炎症和免疫激活中发挥着关键作用,其涉及艾滋病毒疾病进展。在这里,我们研究了BBI对外周血单核细胞衍生巨噬细胞HIV感染的影响。我们证明,BBI可能在没有细胞毒性的情况下在巨噬细胞中效果抑制HIV复制。对HIV的BBI作用机制的研究表明,BBI诱导IFN-β和多个IFN刺激基因(ISGS)的表达,包括肌瘤病毒抗性蛋白2(MX2),2',5'-寡替烯酸合成酶(OAS -1),病毒抑制蛋白(Viperin),ISG15和ISG56。 BBI治疗巨噬细胞也增加了几种已知的HIV限制因子的表达,包括apobec3f,apobec3g和tetherin。此外,BBI增强了IRF3的磷酸化,IFN-β的关键调节剂。通过中和抗体对I IFN受体(抗IFNAR)抑制IFN-β途径被废除BBI介导的抗HIV因子诱导和巨噬细胞的抑制作用。这些发现,BBI可以激活IFN-β-介导的信号通路,初始化巨噬细胞内的细胞内先天免疫,并且在病毒复制周期的多个步骤中纯化HIV表明必须进一步研究BBI作为替代和经济效益的抗HIV天然产品。

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