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首页> 外文期刊>Molecular Immunology >Cloning and molecular characterization of a human recombinant IgG Fab binding to the Tat protein of human immunodeficiency virus type 1 (HIV-1) derived from the repertoire of a seronegative patient.
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Cloning and molecular characterization of a human recombinant IgG Fab binding to the Tat protein of human immunodeficiency virus type 1 (HIV-1) derived from the repertoire of a seronegative patient.

机译:人重组IgGl Fab与源自血清阴性患者库的人1型免疫缺陷病毒(HIV-1)Tat蛋白结合的克隆和分子表征。

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摘要

A study aiming at cloning and characterizing natural antibodies to human immunodeficiency virus type 1 (HIV-1) targets is described. In particular, we report the molecular cloning of a Fab molecule binding the HIV-1/Tat protein from a seronegative patient. The Fab was characterized for its binding specificity and investigated in regards to its molecular structure. Furthermore, to evaluate the role played by the heavy and light chains in the binding to the antigen, hybrid Fabs were constructed combining the heavy and the light chain of the natural anti-Tat clone with a control high-affinity Fab derived from the repertoire of the same patient. The results indicate that the natural immunoglobulin under study: (i) is a polyreactive antibody of IgG1 isotype, and not an IgM as usually described for anti-HIV natural clones, (ii) shows a pattern of mutations compatible with an antigen-driven mechanisms, (iii) its heavy chain derives from a V-gene subfamily (V3-23) highly represented in fetal life, and (iv) itsheavy chain variable region exhibits several characteristics, including an extremely long, hydrophilic CDR3, that are unusual and theoretically important in determining the polyreactive capacity of the molecule.
机译:描述了一项旨在克隆和表征针对人类免疫缺陷病毒1型(HIV-1)目标的天然抗体的研究。特别是,我们报道了血清阴性患者中结合HIV-1 / Tat蛋白的Fab分子的分子克隆。 Fab的特征在于其结合特异性,并就其分子结构进行了研究。此外,为了评估重链和轻链在与抗原的结合中所起的作用,构建了混合Fab,将天然抗Tat克隆的重链和轻链与衍生自A.co.co.kl库的对照高亲和力Fab相结合。同一位病人。结果表明,正在研究的天然免疫球蛋白:(i)是IgG1同种型的多反应性抗体,而不是通常针对抗HIV天然克隆描述的IgM,(ii)显示了与抗原驱动机制兼容的突变模式,(iii)其重链来自胎儿生命中具有很高代表性的V基因亚家族(V3-23),并且(iv)其重链可变区具有多种特性,包括极长的亲水性CDR3,这在理论上是不寻常的在确定分子的多反应能力方面很重要。

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