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CH2 Domain of Mouse IgG3 Governs Antibody Oligomerization Increases Functional Affinity to Multivalent Antigens and Enhances Hemagglutination

机译:小鼠IgG3的CH2域控制抗体寡聚增加了对多价抗原的功能亲和力并增强了血凝反应

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摘要

Mouse IgG3 is highly protective against several life-threatening bacteria. This isotype is the only one among mouse IgGs that forms non-covalent oligomers, has increased functional affinity to polyvalent antigens, and efficiently agglutinates erythrocytes. IgG3 also triggers the complement cascade. The high efficacy of protection after passive immunization with IgG3 is correlated with the unique properties of this isotype. Although the features of IgG3 are well documented, their molecular basis remains elusive. Based on functional analyses of IgG1/IgG3 hybrid molecules with swapped constant domains, we identified IgG3-derived CH2 domain as a major determinant of antibody oligomerization and increased functional affinity to a multivalent antigen. The CH2 domain was also crucial for efficient hemagglutination triggered by IgG3 and was indispensable for complement cascade activation. This domain is glycosylated and atypically charged. A mutational analysis based on molecular models of CH2 domain charge distribution indicated that the functional affinity was influenced by the specific charge location. N-glycans were essential for CH2-dependent enhancement of hemagglutination and complement activation. Oligomerization was independent of CH2 charge and glycosylation. We also verified that known C1q-binding motifs are functional in mouse IgG3 but not in IgG1 framework. We generated for the first time a gain-of-function antibody with properties transferred from IgG3 into IgG1 by replacing the CH2 domain. Finding that the CH2 domain of IgG3 governs unique properties of this isotype is likely to open an avenue toward the generation of IgG3-inspired antibodies that will be protective against existing or emerging lethal pathogens.
机译:小鼠IgG3对几种威胁生命的细菌具有高度保护作用。这种同种型是小鼠IgG中唯一形成非共价寡聚物,对多价抗原具有增强的功能亲和力并有效凝集红细胞的同种抗体。 IgG3也触发补体级联反应。 IgG3被动免疫后的高效保护作用与该同种型的独特特性有关。尽管IgG3的特征已得到充分证明,但其分子基础仍然难以捉摸。基于具有交换的恒定域的IgG1 / IgG3杂合分子的功能分析,我们确定了IgG3衍生的CH2域是抗体寡聚和增加对多价抗原功能亲和力的主要决定因素。 CH2结构域对于由IgG3触发的有效血凝反应也至关重要,并且对于补体级联激活必不可少。该结构域被糖基化并且非典型地带电。基于CH2域电荷分布的分子模型的突变分析表明,功能亲和力受特定电荷位置的影响。 N-聚糖对于CH2依赖的血凝和补体激活至关重要。齐聚反应不依赖于CH2电荷和糖基化。我们还验证了已知的C1q结合基序在小鼠IgG3中起作用,但在IgG1框架中不起作用。我们首次通过替换CH2结构域获得了功能获得的抗体,该抗体具有从IgG3转移到IgG1的特性。发现IgG3的CH2结构域支配该同种型的独特特性,很可能为IgG3激发的抗体的产生开辟一条道路,该抗体将针对现存或新兴的致病性病原体提供保护。

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