首页> 外文期刊>The Journal of Experomental Medicine >Structural analysis of the human immunodeficiency virus-binding domain of CD4. Epitope mapping with site-directed mutants and anti-idiotypes.
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Structural analysis of the human immunodeficiency virus-binding domain of CD4. Epitope mapping with site-directed mutants and anti-idiotypes.

机译:CD4的人体免疫缺陷病毒结合域的结构分析。用定点突变体和抗独特型进行表位作图。

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The CD4 molecule, a differentiation marker expressed primarily by T lymphocytes, plays an important role in lymphocyte activation. CD4 is also the receptor for HIV. A number of recent studies have localized the high affinity binding site of the HIV envelope glycoprotein, gp120, to the NH2-terminal (V1) domain of CD4, a region with sequence and predicted structural homology with Ig kappa chain V domains (V kappa). In this report, we show that V1 bears structural similarities with V kappa regions through detailed epitope mapping of 26 CD4 mAbs. The binding sites of these mAbs were initially defined relative to one another by crossblocking analysis and were then localized to specific domains of CD4 in blocking studies with truncated, soluble CD4 proteins. The epitopes within the V1 domain were mapped in detail with a panel of 17 substitution mutants, and the specificities of several mAbs that appear to recognize very similar epitopes were examined in crossblocking studies with anti-idiotype antibodies. The location of the epitopes is consistent with a V kappa-like structure of V1. Most of the epitopes lie within regions of predicted exposed loops. A number of these epitopes span discontinuous residues in the linear sequence that lies in close proximity in an Ig fold. Alignment of CD4 V1 with the Ig V kappa chains places these epitopes within stretches corresponding to the complimentarity-determining regions. This epitope analysis is relevant for a vaccine strategy for HIV based on anti-idiotype antibodies to CD4 mAbs and for studies with CD4 antibodies on the role of CD4 in T lymphocyte activation.
机译:CD4分子是主要由T淋巴细胞表达的分化标记,在淋巴细胞活化中起重要作用。 CD4也是HIV的受体。最近的许多研究已将HIV包膜糖蛋白gp120的高亲和力结合位点定位在CD4的NH2末端(V1)结构域上,该区域具有序列,并与Igκ链V结构域(V kappa)具有预测的结构同源性。在此报告中,我们显示V1通过26个CD4 mAb的详细表位作图,与V kappa区具有结构相似性。这些mAb的结合位点最初是通过交叉阻断分析相对于彼此定义的,然后在用截短的可溶性CD4蛋白进行的阻断研究中定位于CD4的特定域。用一组17个取代突变体详细定位了V1域内的表位,并在用抗独特型抗体进行的交叉阻断研究中检测了一些似乎识别非常相似的表位的mAb的特异性。表位的位​​置与V1的Vκ样结构一致。大多数表位位于预测的裸露环中。这些表位中的许多跨越线性序列中的不连续残基,其以Ig折叠紧密相邻。 CD4 V1与Ig Vκ链的比对将这些表位置于与互补决定区相对应的延伸范围内。此表位分析与基于针对CD4 mAb的抗独特型抗体的HIV疫苗策略以及与CD4抗体研究CD4在T淋巴细胞活化中的作用有关。

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