首页> 外文期刊>Antimicrobial agents and chemotherapy. >Cyanovirin-N, a potent human immunodeficiency virus-inactivating protein, blocks both CD4-dependent and CD4-independent binding of soluble gp120 (sgp120) to target cells, inhibits sCD4-induced binding of sgp120 to cell-associated CXCR4, and dissociat
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Cyanovirin-N, a potent human immunodeficiency virus-inactivating protein, blocks both CD4-dependent and CD4-independent binding of soluble gp120 (sgp120) to target cells, inhibits sCD4-induced binding of sgp120 to cell-associated CXCR4, and dissociat

机译:Cyanovirin-N是一种有效的人类免疫缺陷病毒灭活蛋白,可阻断可溶性gp120(sgp120)与靶细胞的CD4依赖性和CD4依赖性结合,抑制sCD4诱导的sgp120与细胞相关的CXCR4结合,并解离

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Cyanovirin-N (CV-N), an 11-kDa protein originally isolated from the cyanobacterium Nostoc ellipsosporum, potently inactivates diverse strains of human immunodeficiency virus type 1 (HIV-1), HIV-2, simian immunodeficiency virus, and feline immunodeficiency virus. It has been well established that the HIV surface envelope glycoprotein gp120 is a molecular target of CV-N. We recently reported that CV-N impaired the binding of virion-associated gp120 to cell-associated CD4 and that CV-N preferentially inhibited binding of the glycosylation-dependent neutralizing monoclonal antibody 2G12 to gp120. However, CV-N did not interfere with the interactions of soluble CD4 (sCD4) with either soluble gp120 (sgp120) or virion-associated gp120. In the present study, we have evaluated the effects of CV-N on the binding of sgp120 to cell-associated CD4 to clarify the experimental basis of the previous binding results, and we further address the detailed mechanism of action of CV-N. Here we present evidence that (i) CV-N impairs both CD4-dependent and CD4-independent binding of sgp120 to the target cells, (ii) CV-N blocks the sCD4-induced binding of sgp120 with cell-associated coreceptor CXCR4, and (iii) CV-N dissociates bound sgp120 from target cells. The results illustrate that the measured effects of CV-N on gp120-CD4 binding interactions depend upon the type of CD4 (soluble or cell associated), but not upon the type of gp120 (soluble or virion associated), employed in the experimental protocol. In addition, this study reinforces that CV-N acts uniquely to prevent essential interactions between the envelope glycoprotein and target cell receptors and further supports the potential broad utility of CV-N as a microbicide to prevent the transmission of HIV and AIDS.
机译:Cyanovirin-N(CV-N)是一种11-kDa的蛋白,最初从蓝细菌Nostoc ellipsosporum中分离出来,可有效灭活人类免疫缺陷病毒1型(HIV-1),HIV-2,猿猴免疫缺陷病毒和猫免疫缺陷病毒的多种病毒株。众所周知,HIV表面包膜糖蛋白gp120是CV-N的分子靶标。我们最近报道,CV-N损害病毒体相关gp120与细胞相关CD4的结合,并且CV-N优先抑制糖基化依赖性中和单克隆抗体2G12与gp120的结合。但是,CV-N不会干扰可溶性CD4(sCD4)与可溶性gp120(sgp120)或与病毒体相关的gp120的相互作用。在本研究中,我们评估了CV-N对sgp120与细胞相关CD4结合的影响,以阐明先前结合结果的实验​​基础,并且我们进一步探讨了CV-N作用的详细机制。在这里,我们提供的证据(i)CV-N损害sgp120与靶细胞的CD4依赖性和CD4依赖性结合,(ii)CV-N阻断sgp120与细胞相关的共受体CXCR4的sCD4诱导的结合,和(iii)CV-N将结合的sgp120与靶细胞解离。结果表明,CV-N对gp120-CD4结合相互作用的测量效果取决于实验方案中使用的CD4的类型(可溶性或细胞相关),而不取决于gp120的类型(可溶性或病毒体相关)。此外,这项研究进一步强调了CV-N在预防包膜糖蛋白与靶细胞受体之间必要的相互作用方面具有独特作用,并进一步支持了CV-N作为杀微生物剂预防HIV和AIDS传播的潜在广泛用途。

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