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Using a Combined Computational-Experimental Approach to Predict Antibody-Specific B Cell Epitopes

机译:使用组合的计算实验方法来预测抗体特异性B细胞表位

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摘要

Antibody epitope mapping is crucial for understanding B cell-mediated immunity and required for characterizing therapeutic antibodies. In contrast to T cell epitope mapping, no computational tools are in widespread use for prediction of B cell epitopes. Here, we show that, utilizing the sequence of an antibody, it is possible to identify discontinuous epitopes on its cognate antigen. The predictions are based on residue-pairing preferences and other interface characteristics. We combined these antibody-specific predictions with results of cross-blocking experiments that identify groups of antibodies with overlapping epitopes to improve the predictions. We validate the high performance of this approach by mapping the epitopes of a set of antibodies against the previously uncharacterized D8 antigen, using complementary techniques to reduce method-specific biases (X-ray crystallography, peptide ELISA, deuterium exchange, and site-directed mutagenesis). These results suggest that antibody-specific computational predictions and simple cross-blocking experiments allow for accurate prediction of residues in conformational B cell epitopes.
机译:抗体表位作图对于理解B细胞介导的免疫力至关重要,并且是表征治疗性抗体所必需的。与T细胞表位作图相反,没有计算工具被广泛用于B细胞表位的预测。在这里,我们表明,利用抗体的序列,可以鉴定其关联抗原上的不连续表位。这些预测基于残基配对偏好和其他界面特征。我们将这些抗体特异性的预测结果与交叉阻断实验的结果相结合,该实验确定了具有重叠表位的抗体组以改善预测结果。我们通过映射一套针对先前未表征的D8抗原的抗体的表位,并使用互补技术来减少方法特有的偏倚(X射线晶体学,肽ELISA,氘交换和定点诱变),验证了这种方法的高性能)。这些结果表明,抗体特异性的计算预测和简单的交叉阻断实验可以准确预测构象B细胞表位中的残基。

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