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Toward high-resolution homology modeling of antibody Fv regions and application to antibody-antigen docking

机译:抗体Fv区的高分辨率同源性建模及其在抗体-抗原对接中的应用

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摘要

High-resolution homology models are useful in structure-based protein engineering applications, especially when a crystallographic structure is unavailable. Here, we report the development and implementation of RosettaAntibody, a protocol for homology modeling of antibody variable regions. The protocol combines comparative modeling of canonical complementarity determining region (CDR) loop conformations and de novo loop modeling of CDR H3 conformation with simultaneous optimization of VL-VH rigid-body orientation and CDR backbone and side-chain conformations. The protocol was tested on a benchmark of 54 antibody crystal structures. The median root-mean-square-deviation (rmsd) of the antigen binding pocket comprised of all the CDR residues was 1.5 Å with 80% of the targets having an rmsd lower than 2.0 Å. The median backbone heavy atom global rmsd of the CDR H3 loop prediction was 1.6 Å, 1.9 Å, 2.4 Å, 3.1 Å and 6.0 Å for very short (4–6 residues), short (7–9), medium (10–11), long (12–14) and very long (17–22) loops respectively. When the set of ten top-scoring antibody homology models are used in local ensemble docking to antigen, a moderate to high accuracy docking prediction was achieved in seven of fifteen targets. This success in computational docking with high-resolution homology models is encouraging, but challenges still remain in modeling antibody structures for sequences with long H3 loops. This first large-scale antibody-antigen docking study using homology models reveals the level of “functional accuracy” of these structural models towards protein engineering applications.
机译:高分辨率同源性模型在基于结构的蛋白质工程应用中很有用,尤其是在没有晶体学结构时。在这里,我们报告RosettaAntibody(抗体可变区同源建模的协议)的开发和实施。该协议结合了规范互补决定区(CDR)环构象的对比建模和CDR H3构象的从头环建模以及VL-VH刚体定向和CDR主链及侧链构象的同步优化。该协议在54个抗体晶体结构的基准上进行了测试。由所有CDR残基组成的抗原结合袋的均方根均方根偏差(rmsd)为1.5,其中80%的靶标的均方根值均低于2.0。对于非常短(4–6个残基),短(7–9个残基),中(10–11个)残基,CDR H3回路预测的中位骨架重原子总体均方根有效值分别为1.6Å,1.9Å,2.4Å,3.1Å和6.0Å ),长(12-14)和长(17-22)循环。当将十个得分最高的抗体同源性模型集用于局部整体对接抗原时,在十五个靶物中的七个中实现了中到高精度对接预测。高分辨率同源性模型在计算对接方面的成功令人鼓舞,但是在为具有长H3环的序列建模抗体结构方面仍然存在挑战。首次使用同源性模型的大规模抗体-抗原对接研究揭示了这些结构模型在蛋白质工程应用中的“功能准确性”水平。

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