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首页> 外文期刊>Molecular pharmaceutics >Conformational and Colloidal Stabilities of Human Immunoglobulin G Fc and Its Cyclized Variant: Independent and Compensatory Participation of Domains in Aggregation of Multidomain Proteins
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Conformational and Colloidal Stabilities of Human Immunoglobulin G Fc and Its Cyclized Variant: Independent and Compensatory Participation of Domains in Aggregation of Multidomain Proteins

机译:人免疫球蛋白G FC及其环化变体的构象和胶体稳定性:多域蛋白聚集中域的独立和补偿参与

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Monoclonal immunoglobulin G (IgG) is a multidomain protein. It has been reported that the conformational and colloidal stabilities of each domain are different, and it is predicted that limited domains participate in IgG aggregation. In contrast, the influence of interdomain interactions on IgG aggregation remains unclear. The fragment crystallizable (Fc) region is also a multidomain protein consisting of two sets of C(H)2 and C(H)3 domains. Here, we have analyzed the conformational change and aggregate size of an aglycosylated Fc region induced by both acid and salt stresses and have elucidated the influence of interdomain interactions between C(H)2 and C(H)3 domains on the conformational and colloidal stabilities of the aglycosylated Fc region. Singular value decomposition analyses demonstrated that the C(H)2 and C(H)3 domains unfolded almost independently from each other in the aglycosylated Fc region. Meanwhile, the colloidal stabilities of the C(H)2 and C(H)3 domains affect the aggregation process of the unfolded aglycosylated Fc region in a compensatory way. Moreover, the influence of an additional interdomain disulfide bond, introduced at the C-terminal end of the C(H)3 domains to produce the Fc variant, cyclized Fc, was evaluated. This interdomain disulfide bond increased the conformational stability of the C(H)3 domain. The stabilization of the C(H)3 domain in the cyclized Fc successfully improved aggregation tolerance following acid stress, although the sizes of aggregates produced were comparable to those of the aglycosylated Fc region.
机译:单克隆免疫球蛋白G(IgG)是多畴蛋白质。据报道,每个结构域的构象和胶体稳定性是不同的,并且预测有限的结构域参与IgG聚集。相反,IgG聚集对跨域相互作用的影响仍不清楚。片段结晶(Fc)区也是由两组C(H)2和C(H)3个结构域组成的多畴蛋白质。这里,我们已经分析了由酸和盐胁迫诱导的糖糖基化的Fc区的构象变化和骨料大小,并阐明了C(H)2和C(H)3结构域与构象和胶体稳定性之间的互联相互作用的影响糖基化的Fc区。奇异值分解分析证明C(H)2和C(H)3结构域几乎在糖糖化的FC区中彼此独立地展开。同时,C(H)2和C(H)3结构域的胶体稳定性以补偿方式影响展开的糖糖化Fc区的聚集过程。此外,评价在C(H)3结构域的C末端引入以产生Fc变体的C-末端的附加二烯酰键的影响得到评价。该二烯酰二硫键增加了C(H)3结构域的构象稳定性。稳定在环化的Fc中的C(H)3结构域成功改善了酸性胁迫后的聚集耐受性,尽管所产生的聚集体的尺寸与糖糖基化的Fc区的尺寸相当。

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