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首页> 外文期刊>Journal of Molecular Biology >Structural mimicry of CD4 by a cross-reactive HIV-1 neutralizing antibody with CDR-H2 and H3 containing unique motifs.
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Structural mimicry of CD4 by a cross-reactive HIV-1 neutralizing antibody with CDR-H2 and H3 containing unique motifs.

机译:交叉反应的HIV-1中和抗体具有独特的CDR-H2和H3结构模仿CD4。

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Human immunodeficiency virus (HIV) entry into cells is initiated by the binding of its envelope glycoprotein (Env) gp120 to receptor CD4. Antibodies that bind to epitopes overlapping the CD4-binding site (CD4bs) on gp120 can prevent HIV entry by competing with cell-associated CD4; their ability to outcompete CD4 is a major determinant of their neutralizing potency and is proportional to their avidity. The breadth of neutralization and the likelihood of the emergence of antibody-resistant virus are critically dependent on the structure of their epitopes. Because CD4bs is highly conserved, it is reasonable to hypothesize that antibodies closely mimicking CD4 could exhibit relatively broad cross-reactivity and a high probability of preventing the emergence of resistant viruses. Previously, in a search for antibodies that mimic CD4 or the co-receptor, we identified and characterized a broadly cross-reactive HIV-neutralizing CD4bs human monoclonal antibody (hmAb), m18. Here, we describe the crystal structure of Fab m18 at 2.03 A resolution, which reveals unique conformations of heavy chain complementarity-determining regions (CDRs) 2 and 3 (H2 and H3). H2 is highly bulged and lacks cross-linking interstrand hydrogen bonds observed in all four canonical structures. H3 is 17.5 A long and rigid, forming an extended beta-sheet decorated with an alpha-turn motif bearing a phenylalanine-isoleucine fork at the apex. It shows striking similarity to the Ig CDR2-like C'C'' region of the CD4 first domain D1 that dominates the binding of CD4 to gp120. Docking simulations suggest significant similarity between the m18 epitope and the CD4bs on gp120. Fab m18 does not enhance binding of CD4-induced (CD4i) antibodies, nor does it induce CD4-independent fusion mediated by the HIV Env. Thus, vaccine immunogens based on the m18 epitope structure are unlikely to elicit antibodies that could enhance infection. The structure can also serve as a basis for the design of novel, highly efficient inhibitors of HIV entry.
机译:人免疫缺陷病毒(HIV)进入细胞的过程是通过其包膜糖蛋白(Env)gp120与受体CD4的结合而开始的。与gp120上与CD4结合位点(CD4bs)重叠的表位结合的抗体可以通过与细胞相关的CD4竞争来防止HIV进入。它们竞争CD4的能力是其中和能力的主要决定因素,并且与它们的亲和力成正比。中和的广度和出现抗药性病毒的可能性主要取决于其表位的结构。由于CD4bs高度保守,因此有理由假设,紧密模仿CD4的抗体可能表现出相对较宽的交叉反应性,并且很有可能阻止耐药性病毒的出现。以前,在寻找模仿CD4或共受体的抗体时,我们鉴定并鉴定了广泛交叉反应的HIV中和CD4bs人单克隆抗体(hmAb),m18。在这里,我们描述Fab m18在2.03 A分辨率的晶体结构,揭示了重链互补决定区(CDRs)2和3(H2和H3)的独特构象。 H2高度鼓胀,并且在所有四个规范结构中均未观察到交联的链间氢键。 H3是17.5长而刚性的,形成一个扩展的β-折叠,该折叠的β-折叠装饰有一个α-转弯的基序,在顶点处带有苯丙氨酸-异亮氨酸叉。它显示出与CD4第一结构域D1的Ig CDR2样C'C''区惊人的相似性,后者主要控制CD4与gp120的结合。对接模拟表明,m18表位和gp120上的CD4b之间存在显着相似性。 Fab m18不会增强CD4诱导的(CD4i)抗体的结合,也不会诱导HIV Env介导的不依赖CD4的融合。因此,基于m18表位结构的疫苗免疫原不太可能引起增强感染的抗体。该结构还可作为设计新型高效HIV抑制剂的基础。

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