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首页> 外文期刊>Molecular Immunology >The inter-heavy chain disulfide bonds of IgG4 are in equilibrium with intra-chain disulfide bonds.
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The inter-heavy chain disulfide bonds of IgG4 are in equilibrium with intra-chain disulfide bonds.

机译:IgG4的重链间二硫键与链内二硫键处于平衡状态。

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Unlike other immunoglobulin G (IgG) subclasses, IgG4 antibodies in plasma have been reported to be functionally monovalent. In a previous paper, we showed that the apparent monovalency of circulating IgG4 antibodies is caused by asymmetry of plasma IgG4-a large fraction has two antigen-binding sites resulting in bispecificity. We postulated that the generation of bispecific antibodies was caused by a post-secretion mechanism, involving the exchange of IgG4 half-molecules (i.e. one heavy and one light chain). This hypothesis was based on the observed instability of the inter-heavy chain disulfide bonds of IgG4. To investigate this instability, we constructed IgG4 mutants and analyzed the covalent interaction between the heavy chains by sodium dodecyl sulfate-poly acrylamide gel electrophoresis (SDS-PAGE) under non-reducing conditions. The mutation to serine of one of the hinge cysteines involved in the inter-heavy chain bond formation, Cys226, resulted in a more stable rather than a more labile inter-heavy chain linkage. Moreover, we confirmed that mutating the IgG4 hinge sequence Cys-Pro-Ser-Cys to the IgG1 hinge sequence Cys-Pro-Pro-Cys also markedly stabilizes the covalent interaction between the heavy-chains. These two observations suggested an explanation for the observed instability of the inter-heavy chain disulfide bonds: the formation of an alternative, intra-chain cystine. Obviously, this intra-chain cystine cannot be formed in the mutant where Cys226 is replaced by Ser, and cannot easily be formed in the mutant with the IgG1 hinge sequence (Cys-Pro-Pro-Cys) due to the restricted torsional freedom of prolines. We, therefore, postulate that the lack of a covalent heavy-chain interaction in a subpopulation of IgG4 reflects an equilibrium between inter- and intra-chain cystines. Based upon the published structure of the IgG4-related hinge-deleted IgG1 myeloma protein Mcg, we propose a model for the two forms of IgG4 and for the half-molecule exchange reaction, which might result in the formation of bispecific IgG4 antibodies.
机译:与其他免疫球蛋白G(IgG)亚类不同,据报道血浆中的IgG4抗体在功能上是单价的。在先前的论文中,我们显示循环中的IgG4抗体的明显单价性是由血浆IgG4的不对称引起的,很大一部分具有两个抗原结合位点,导致双特异性。我们推测双特异性抗体的产生是由分泌后机制引起的,涉及到IgG4半分子(即一条重链和一条轻链)的交换。该假设基于观察到的IgG4重链间二硫键的不稳定性。为了研究这种不稳定性,我们构建了IgG4突变体,并在非还原条件下通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)分析了重链之间的共价相互作用。参与重链间键形成的铰链半胱氨酸之一Cys226的丝氨酸突变导致重链间连接更稳定而不是更不稳定。而且,我们证实了将IgG4铰链序列Cys-Pro-Ser-Cys突变为IgG1铰链序列Cys-Pro-Pro-Cys也显着稳定了重​​链之间的共价相互作用。这两个观察结果为解释重链间二硫键的不稳定性提供了解释:形成了另一种链内胱氨酸。显然,由于脯氨酸的扭转自由度受到限制,这种链内胱氨酸不能在Cys226替换为Ser的突变体中形成,也不容易在具有IgG1铰链序列的突变体(Cys-Pro-Pro-Cys)中形成。 。因此,我们假设在IgG4亚群中缺乏共价重链相互作用反映了链内和链内胱氨酸之间的平衡。基于已公开的IgG4相关铰链缺失的IgG1骨髓瘤蛋白Mcg的结构,我们提出了两种形式的IgG4和半分子交换反应的模型,这可能会导致形成双特异性IgG4抗体。

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