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Comprehensive analysis of antibody recognition in convalescent humans from highly pathogenic avian influenza H5N1 infection

机译:对高致病性禽流感H5N1感染恢复期人的抗体识别的综合分析

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Understanding the mechanism of protective antibody recognition against highly pathogenic avian influenza A virus H5N1 in humans is critical for the development of effective therapies and vaccines. Here we report the crystal structure of three H5-specific human monoclonal antibodies bound to the globular head of hemagglutinin (HA) with distinct epitope specificities, neutralization potencies and breadth. A structural and functional analysis of these epitopes combined with those reported elsewhere identifies four major vulnerable sites on the globular head of H5N1 HA. Chimeric and vulnerable site-specific mutant pseudoviruses are generated to delineate broad neutralization specificities of convalescent sera from two individuals who recovered from the infection with H5N1 virus. Our results show that the four vulnerable sites on the globular head rather than the stem region are the major neutralizing targets, suggesting that during natural H5N1 infection neutralizing antibodies against the globular head work in concert to provide protective antibody-mediated immunity.
机译:了解人类针对高致病性禽流感H5N1的保护性抗体识别机制对于开发有效的疗法和疫苗至关重要。在这里,我们报告了三种H5特异性人类单克隆抗体的晶体结构,这些抗体以独特的表位特异性,中和力和广度与血凝素(HA)的球形头部结合。对这些表位的结构和功能分析以及在其他地方报道的表位,确定了H5N1 HA球状头上的四个主要脆弱部位。产生嵌合的和易受攻击的位点特异性突变假病毒,以描绘从H5N1病毒感染中恢复过来的两个个体的恢复期血清的广泛中和特异性。我们的结果表明,球状头部而不是茎区域的四个易受攻击部位是主要的中和目标,这表明在自然H5N1感染过程中,针对球状头部的中和抗体协同作用,可提供保护性抗体介导的免疫力。

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