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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Mutational analysis of domain antibodies reveals aggregation hotspots within and near the complementarity determining regions.
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Mutational analysis of domain antibodies reveals aggregation hotspots within and near the complementarity determining regions.

机译:结构域抗体的突变分析揭示了互补决定区之内和附近的聚集热点。

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摘要

High-affinity antibodies are critical for numerous diagnostic and therapeutic applications, yet their utility is limited by their variable propensity to aggregate either at low concentrations for antibody fragments or high concentrations for full-length antibodies. Therefore, determining the sequence and structural features that differentiate aggregation-resistant antibodies from aggregation-prone ones is critical to improving their activity. We have investigated the molecular origins of antibody aggregation for human V(H) domain antibodies that differ only in the sequence of the loops containing their complementarity determining regions (CDRs), yet such antibodies possess dramatically different aggregation propensities in a manner not correlated with their conformational stabilities. We find the propensity of these antibodies to aggregate after being transiently unfolded is not a distributed property of the CDR loops, but can be localized to aggregation hotspots within and near the first CDR (CDR1). Moreover, we have identified a triad of charged mutations within CDR1 and a single charged mutation adjacent to CDR1 that endow the poorly soluble variant with the desirable biophysical properties of the aggregation-resistant antibody. Importantly, we find that several other charged mutations in CDR1, non-CDR loops and the antibody scaffold are incapable of preventing aggregation. We expect that our identification of aggregation hotspots that govern antibody aggregation within and proximal to CDR loops will guide the design and selection of antibodies that not only possess high affinity and conformational stability, but also extreme resistance to aggregation.
机译:高亲和力抗体对于许多诊断和治疗应用至关重要,但是其实用性受到其可变倾向的限制,无论是抗体片段的低浓度聚集还是全长抗体的高浓度聚集。因此,确定区分抗聚集抗体与易于聚集抗体的序列和结构特征对于提高其活性至关重要。我们已经研究了人类V(H)域抗体的抗体聚集的分子起源,这些抗体的区别仅在于包含其互补决定区(CDR)的环的序列不同,但是此类抗体具有与它们无关的方式具有明显不同的聚集倾向构象稳定性。我们发现这些抗体在瞬时解开后聚集的倾向不是CDR环的分布特性,而是可以定位在第一个CDR(CDR1)内和附近的聚集热点。此外,我们已经确定了CDR1内的三重带电突变和与CDR1相邻的单个带电突变,它们赋予了难溶性变体以抗聚集性抗体的理想生物物理特性。重要的是,我们发现CDR1,非CDR环和抗体支架中的其他几个带电突变无法阻止聚集。我们希望,鉴定控制CDR环内和邻近CDR环的抗体聚集的聚集热点将指导抗体的设计和选择,这些抗体不仅具有高亲和力和构象稳定性,而且具有极强的聚集抗性。

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