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Analysis of the structural correlates for antibody polyreactivity by multiple reassortments of chimeric human immunoglobulin heavy and light chain V segments

机译:通过嵌合人免疫球蛋白重链和轻链V段的多种重排分析抗体多反应性的结构相关性

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摘要

Polyreactive antibodies (Abs) constitute a major proportion of the early Ab repertoire and are an important component of the natural defense mechanisms against infections. They are primarily immunoglobulin M (IgM) and bind a variety of structurally dissimilar self and exogenous antigens (Ags) with moderate affinity. We analyzed the contribution of Ig polyvalency and of heavy (H) and light (L) chain variable (V) regions to polyreactivity in recombinatorial experiments involving the VH-diversity(D)-JH and V kappa-J kappa gene segments of a human polyreactive IgM, monoclonal antibody 55 (mAb55), and those of a human monoreactive anti-insulin IgG, mAb13, in an in vitro C gamma l and C kappa human expression system. These mAbs are virtually identical in their VH and V kappa gene segment sequences. First, we expressed the VH-D-JH and V kappa-J kappa genes of the IgM mAb55 as V segments of an IgG molecule. The bivalent recombinant IgG Ab bound multiple Ags with an efficiency only slightly lower than that of the original decavalent IgM mAb55, suggesting that class switch to IgG does not affect the Ig polyreactivity. Second, we coexpressed the mAb55-derived H or kappa chain with the mAb13-derived kappa or H chain, respectively. The hybrid IgG Ab bearing the mAb55-derived H chain V segment paired with the mAb13-derived kappa V segment, but not that bearing the mAb13-derived H chain V segment paired with the mAb55-derived kappa V segment, bound multiple Ags, suggesting that the Ig H chain plays a major role in the Ig polyreactivity. Third, we shuffled the framework 1 (FR1)-FR3 and complementarity determining region 3 (CDR3) regions of the H and kappa chain V segments of the mAB55-derived IgG molecule with the corresponding regions of the monoreactive IgG mAb13. The mAb55-derived IgG molecule lost polyreactivity when the H chain CDR3, but not the FR1- FR3 region, was replaced by the corresponding region of mAb13, suggesting that within the H chain, the CDR3 provides the major structural correlate for multiple Ag-binding. This was formally proved by the multiple Ag-binding of the originally monoreactive mAb13-derived IgG molecule grafted with the mAb55-derived H chain CDR3. The polyreactivity of this chimeric IgG was maximized by grafting of the mAb55-derived kappa chain FR1-FR3, but not that of the kappa chain CDR3.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:多反应抗体(Abs)构成了早期Ab库中的主要部分,并且是抵抗感染的自然防御机制的重要组成部分。它们主要是免疫球蛋白M(IgM),并以中等亲和力结合各种结构上不同的自身和外源抗原(Ags)。我们在涉及人的VH-多样性(D)-JH和V kappa-J kappa基因片段的重组实验中分析了Ig多价和重链(H)和轻链(L)可变区(V)对多反应性的贡献体外Cγ1和Cκ人表达系统中的多反应性IgM,单克隆抗体55(mAb55)和人单反应抗胰岛素IgG mAb13的单克隆抗体。这些mAb的VH和V kappa基因片段序列实际上相同。首先,我们将IgM mAb55的VH-D-JH和V kappa-J kappa基因表达为IgG分子的V段。二价重组IgG Ab结合多个Ag的效率仅略低于原始十价IgM mAb55的效率,这表明类别转换为IgG不会影响Ig多反应性。其次,我们分别将mAb55衍生的H或κ链与mAb13衍生的κ或H链共表达。带有由mAb55衍生的H链V片段与mAb13衍生的κV片段配对的杂种IgG抗体,但不具有与从mAb55衍生的Kappa V片段配对的带有mAb13衍生的H链V片段的杂种IgG Ab结合了多个Ag。 Ig H链在Ig多反应性中起主要作用。第三,我们将mAB55衍生的IgG分子的H和κ链V片段的构架1(FR1)-FR3和互补决定区3(CDR3)区与单反应性IgG mAb13的相应区一起改组。当H链CDR3而不是FR1- FR3区域被mAb13的相应区域取代时,源自mAb55的IgG分子失去了多反应性,这表明CDR3在H链内为多个Ag结合提供了主要的结构相关性。最初由单反应性mAb13衍生的IgG分子与mAb55衍生的H链CDR3嫁接的多个Ag结合正式证明了这一点。通过嵌合mAb55衍生的Kappa链FR1-FR3而不是Kappa链CDR3的嫁接,使这种嵌合IgG的多反应性最大化。(摘要截短了400字)

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