Skottrup Peter Durand
Department of Clinical Biochemistry, Copenhagen University Hospital, Kettegård Alle 30, DK-2650 Hvidovre, Denmark.
J Mol Graph Model. 2017 Sep;76:305-312. doi: 10.1016/j.jmgm.2017.07.008. Epub 2017 Jul 11.
Porphyromonas gingivalis is a major periodontitis-causing pathogens. P. gingivalis secrete a cysteine protease termed RgpB, which is specific for Arg-Xaa bonds in substrates. Recently, a nanobody-based assay was used to demonstrate that RgpB could represent a novel diagnostic target, thereby simplifying. P. gingivalis detection. The nanobody, VHH7, had a high binding affinity and was specific for RgpB, when tested towards the highly identical RgpA. In this study a homology model of VHH7 was build. The complementarity determining regions (CDR) comprising the paratope residues responsible for RgpB binding were identified and used as input to the docking. Furthermore, residues likely involved in the RgpB epitope was identified based upon RgpB:RgpA alignment and analysis of residue surface accessibility. CDR residues and putitative RgpB epitope residues were used as input to an information-driven flexible docking approach using the HADDOCK server. Analysis of the VHH7:RgpB model demonstrated that the epitope was found in the immunoglobulin-like domain and residue pairs located at the molecular paratope:epitope interface important for complex stability was identified. Collectively, the VHH7 homology model and VHH7:RgpB docking supplies knowledge of the residues involved in the high affinity interaction. This information could prove valuable in the design of an antibody-drug conjugate for specific RgpB targeting.
牙龈卟啉单胞菌是引起牙周炎的主要病原体。牙龈卟啉单胞菌分泌一种名为RgpB的半胱氨酸蛋白酶,它对底物中的精氨酸-Xaa键具有特异性。最近,一种基于纳米抗体的检测方法被用于证明RgpB可能是一种新型诊断靶点,从而简化了牙龈卟啉单胞菌的检测。当对高度同源的RgpA进行测试时,纳米抗体VHH7具有高结合亲和力且对RgpB具有特异性。在本研究中构建了VHH7的同源模型。确定了包含负责RgpB结合的互补决定区(CDR)残基,并将其用作对接的输入。此外,基于RgpB:RgpA比对和残基表面可及性分析,确定了可能参与RgpB表位的残基。CDR残基和假定的RgpB表位残基被用作使用HADDOCK服务器的信息驱动柔性对接方法的输入。对VHH7:RgpB模型的分析表明,表位位于免疫球蛋白样结构域中,并确定了位于分子互补位:表位界面对于复合物稳定性重要的残基对。总的来说,VHH7同源模型和VHH7:RgpB对接提供了参与高亲和力相互作用的残基的知识。这些信息在设计用于特异性靶向RgpB的抗体-药物偶联物中可能具有价值。