Bujotzek Alexander, Dunbar James, Lipsmeier Florian, Schäfer Wolfgang, Antes Iris, Deane Charlotte M, Georges Guy
Roche Pharmaceutical Research and Early Development, Large Molecule Research, Roche Innovation Center Penzberg, Penzberg, 82377, Germany.
Proteins. 2015 Apr;83(4):681-95. doi: 10.1002/prot.24756. Epub 2015 Feb 5.
The antigen-binding site of antibodies forms at the interface of their two variable domains, VH and VL, making VH-VL domain orientation a factor that codetermines antibody specificity and affinity. Preserving VH-VL domain orientation in the process of antibody engineering is important in order to retain the original antibody properties, and predicting the correct VH-VL orientation has also been recognized as an important factor in antibody homology modeling. In this article, we present a fast sequence-based predictor that predicts VH-VL domain orientation with Q(2) values ranging from 0.54 to 0.73 on the evaluation set. We describe VH-VL orientation in terms of the six absolute ABangle parameters that have recently been proposed as a means to separate the different degrees of freedom of VH-VL domain orientation. In order to assess the impact of adjusting VH-VL orientation according to our predictions, we use the set of antibody structures of the recently published Antibody Modeling Assessment (AMA) II study. In comparison to the original AMAII homology models, we find an improvement in the accuracy of VH-VL orientation modeling, which also translates into an improvement in the average root-mean-square deviation with regard to the crystal structures.
抗体的抗原结合位点形成于其两个可变结构域VH和VL的界面处,使得VH-VL结构域的方向成为共同决定抗体特异性和亲和力的一个因素。在抗体工程过程中保持VH-VL结构域的方向对于保留原始抗体特性很重要,并且预测正确的VH-VL方向也被认为是抗体同源建模中的一个重要因素。在本文中,我们提出了一种基于序列的快速预测器,该预测器在评估集上预测VH-VL结构域方向的Q(2)值范围为0.54至0.73。我们用最近提出的六个绝对ABangle参数来描述VH-VL方向,这些参数是区分VH-VL结构域方向不同自由度的一种方法。为了评估根据我们的预测调整VH-VL方向的影响,我们使用了最近发表的抗体建模评估(AMA)II研究中的抗体结构集。与原始的AMAII同源模型相比,我们发现VH-VL方向建模的准确性有所提高,这也转化为与晶体结构相比平均均方根偏差的改善。