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A LAIR1 insertion generates broadly reactive antibodies against malaria variant antigens.

机译:LAIR1插入可产生针对疟疾变异抗原的广泛反应性抗体。

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摘要

Plasmodium falciparumantigens expressed on the surface of infected erythrocytes are important targets of naturally acquired immunity against malaria, but their high number and variability provide the pathogen with a powerful means of escape from host antibodies. Although broadly reactive antibodies against these antigens could be useful as therapeutics and in vaccine design, their identification has proven elusive. Here we report the isolation of human monoclonal antibodies that recognize erythrocytes infected by different P. falciparumisolates and opsonize these cells by binding to members of the RIFIN family. These antibodies acquired broad reactivity through a novel mechanism of insertion of a large DNA fragment between the V and DJ segments. The insert, which is both necessary and sufficient for binding to RIFINs, encodes the entire 98 amino acid collagen-binding domain of LAIR1, an immunoglobulin superfamily inhibitory receptor encoded on chromosome 19. In each of the two donors studied, the antibodies are produced by a single expanded B-cell clone and carry distinct somatic mutations in the LAIR1 domain that abolish binding to collagen and increase binding to infected erythrocytes. These findings illustrate, with a biologically relevant example, a novel mechanism of antibody diversification by interchromosomal DNA transposition and demonstrate the existence of conserved epitopes that may be suitable candidates for the development of a malaria vaccine.
机译:在感染的红细胞表面表达的恶性疟原虫抗原是自然获得的抗疟疾免疫力的重要目标,但其数量众多且变异性强,为病原体提供了逃避宿主抗体的强大手段。尽管针对这些抗原的广泛反应性抗体可用作治疗剂和疫苗设计,但已证明难以鉴定。在这里,我们报告了人类单克隆抗体的分离,该抗体识别受不同恶性疟原虫感染的红细胞,并通过与RIFIN家族成员结合而调理这些细胞。这些抗体通过在V和DJ片段之间插入大DNA片段的新颖机制获得了广泛的反应性。该插入片段对于结合RIFINs来说是必需和充分的,它编码LAIR1的98个氨基酸的胶原蛋白结合域,LAIR1是编码在19号染色体上的免疫球蛋白超家族抑制性受体。在所研究的两个供体中,每个抗体都是由一个单一的扩增B细胞克隆,并在LAIR1结构域中携带明显的体细胞突变,从而消除了与胶原蛋白的结合,并增加了与感染红细胞的结合。这些发现以生物学上相关的实例说明了通过染色体间DNA转座的抗体多样化的新机制,并证明了保守的表位的存在,其可能是开发疟疾疫苗的合适候选者。

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