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Structure Function and Therapeutic Use of IgM Antibodies

机译:IgM抗体的结构功能和治疗用途

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摘要

Natural immunoglobulin M (IgM) antibodies are pentameric or hexameric macro-immunoglobulins and have been highly conserved during evolution. IgMs are initially expressed during B cell ontogeny and are the first antibodies secreted following exposure to foreign antigens. The IgM multimer has either 10 (pentamer) or 12 (hexamer) antigen binding domains consisting of paired µ heavy chains with four constant domains, each with a single variable domain, paired with a corresponding light chain. Although the antigen binding affinities of natural IgM antibodies are typically lower than IgG, their polyvalency allows for high avidity binding and efficient engagement of complement to induce complement-dependent cell lysis. The high avidity of IgM antibodies renders them particularly efficient at binding antigens present at low levels, and non-protein antigens, for example, carbohydrates or lipids present on microbial surfaces. Pentameric IgM antibodies also contain a joining (J) chain that stabilizes the pentameric structure and enables binding to several receptors. One such receptor, the polymeric immunoglobulin receptor (pIgR), is responsible for transcytosis from the vasculature to the mucosal surfaces of the lung and gastrointestinal tract. Several naturally occurring IgM antibodies have been explored as therapeutics in clinical trials, and a new class of molecules, engineered IgM antibodies with enhanced binding and/or additional functional properties are being evaluated in humans. Here, we review the considerable progress that has been made regarding the understanding of biology, structure, function, manufacturing, and therapeutic potential of IgM antibodies since their discovery more than 80 years ago.
机译:天然免疫球蛋白M(IgM)抗体是五聚体或六偏美宏观免疫球蛋白,并且在进化期间得到高度保守。 IgM最初在B细胞组织发生期间表达,并且是在暴露于外部抗原后分泌的第一抗体。 IgM多聚体具有由具有四个恒定结构域的成对的μ重链组成的10(五聚体)或12(六聚体)抗原结合结构域,每个畴均具有单个可变域,与相应的轻链配对。尽管天然IgM抗体的抗原结合亲和力通常低于IgG,但它们的聚维性允许允许的高耐酸性和有效的补充接合诱导依赖依赖性细胞裂解。 IgM抗体的高亲和力使它们特别有效地在低水平下存在的结合抗原,而非蛋白质抗原,例如存在于微生物表面上存在的碳水化合物或脂质。五聚体IgM抗体还含有稳定五聚体结构的连接(J)链,并能够与几种受体结合。一种这样的受体是聚合物免疫球蛋白受体(PIGR),负责从血管系统到肺和胃肠道的粘膜表面的转红菌症。几种天然存在的IgM抗体已被探索为临床试验中的治疗剂,并且在人类中评估了一种新的分子,具有增强的结合和/或附加功能性的工程化IgM抗体。在这里,我们审查了对IGM抗体的理解以来,在80多年前发现的生物学,结构,功能,制造和治疗潜力的理解,这是相当大的进展。

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