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人类免疫缺陷病毒1型包膜糖蛋白V3环与人类原代巨噬细胞膜上的CCR5和CD4的相互作用。

Interaction of human immunodeficiency virus type 1 envelope glycoprotein V3 loop with CCR5 and CD4 at the membrane of human primary macrophages.

作者信息

Rabehi L, Seddiki N, Benjouad A, Gluckman J C, Gattegno L

机构信息

Laboratoire de Biologie Cellulaire, Faculté de Médecine, Université Paris-Nord, Bobigny, France.

出版信息

AIDS Res Hum Retroviruses. 1998 Dec 20;14(18):1605-15. doi: 10.1089/aid.1998.14.1605.

Abstract

We show that infection of primary monocyte-derived macrophages (MDMs) and blood lymphocytes (PBLs) by human immunodeficiency virus type 1 (HIV-1) R5 strains, but not that of PBLs by X4 strain HIV-1LAI, is inhibited by beta-chemokines RANTES and MIP-1alpha. A biotinylated disulfide-bridged peptide mimicking the complete loop of clade B consensus V3 domain of gp120 (V3Cs), but not a biotinylated V3LAI peptide or a control beta-endorphin peptide of approximately the same molecular weight (MW), was found to bind specifically to MDM membrane proteins, in particular two proteins of 42 and 62 kDa migrating as sharp bands after electroblotting onto Immobilon, and this was specifically inhibited by anti-V3 antibodies. When biotinylated V3Cs was incubated with intact MDMs, which were then washed and lysed, and the resulting material was incubated with streptavidin-agarose beads and electroblotted onto Immobilon, fresh V3Cs also bound to proteins of the same molecular weight recovered in the V3Cs-interacting material. This binding was inhibited by anti-V3 antibodies, and no binding occurred with the control peptides. V3Cs also bound to soluble recombinant CD4, and CD4 monoclonal antibody Q4120 specifically recognized the V3Cs-interacting 62-kDa protein, which should thus correspond to CD4. Recombinant radiolabeled RANTES, MIP-1alpha, and MIP-1beta, but not IL-8, also bound to a 42-kDa protein on the membrane of MDMs as well as to the V3Cs-interacting 42-kDa protein, and excess unlabeled V3Cs inhibited such binding. This protein was also recognized by antibodies to CCR5, the RANTES/MIP-1alpha/MIP-1beta receptor. These data show that V3Cs binds to MDM membrane proteins that comprise CD4 and CCR5, and that multimolecular complexes involving at least gp120 V3, CD4, and CCR5 are formed on the surface of MDMs as part of V3-mediated postbinding events occurring during HIV-1 infection.

摘要

我们发现,β趋化因子RANTES和MIP-1α可抑制人免疫缺陷病毒1型(HIV-1)R5毒株对原代单核细胞衍生巨噬细胞(MDM)和血液淋巴细胞(PBL)的感染,但不能抑制X4毒株HIV-1LAI对PBL的感染。一种生物素化的二硫键桥连肽,模拟gp120的B亚型共有V3结构域的完整环(V3Cs),而不是生物素化的V3LAI肽或分子量大致相同的对照β-内啡肽肽,被发现能特异性结合MDM膜蛋白,特别是两种分子量分别为42 kDa和62 kDa的蛋白,在电转印到Immobilon后呈现为清晰条带,并且这种结合被抗V3抗体特异性抑制。当生物素化的V3Cs与完整的MDM一起孵育,然后洗涤并裂解,所得物质与链霉亲和素-琼脂糖珠孵育并电转印到Immobilon上时,新鲜的V3Cs也能与在V3Cs相互作用物质中回收的相同分子量的蛋白结合。这种结合被抗V3抗体抑制,对照肽则不发生结合。V3Cs还能与可溶性重组CD4结合,并且CD4单克隆抗体Q4120能特异性识别与V3Cs相互作用的62 kDa蛋白,因此该蛋白应对应于CD4。重组放射性标记的RANTES、MIP-1α和MIP-1β,但不是IL-8,也能与MDM膜上的一种42 kDa蛋白以及与V3Cs相互作用的42 kDa蛋白结合,过量的未标记V3Cs可抑制这种结合。这种蛋白也能被RANTES/MIP-1α/MIP-1β受体CCR5的抗体识别。这些数据表明,V3Cs能与包含CD4和CCR5的MDM膜蛋白结合,并且在MDM表面形成了至少涉及gp120 V3、CD4和CCR5的多分子复合物,这是HIV-1感染过程中V3介导的结合后事件的一部分。

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