Institute for Research in Molecular Medicine (INFORMM), Universiti Sains Malaysia, Minden, 11800, Penang, Malaysia.
Analytical Biochemistry Research Centre, Universiti Sains Malaysia, Minden, 11800, Penang, Malaysia.
J Comput Aided Mol Des. 2019 Mar;33(3):375-385. doi: 10.1007/s10822-019-00186-z. Epub 2019 Jan 28.
Mycobacterium tuberculosis (Mtb) 16.3 kDa heat shock protein 16.3 (HSP16.3) is a latency-associated antigen that can be targeted for latent tuberculosis (TB) diagnostic and therapeutic development. We have previously developed human V domain antibodies (dAbs; clone E3 and F1) specific against HSP16.3. In this work, we applied computational methods to optimise and design the antibodies in order to improve the binding affinity with HSP16.3. The V domain antibodies were first docked to the dimer form of HSP16.3 and further sampled using molecular dynamics simulation. The calculated binding free energy of the HSP16.3-dAb complexes showed non-polar interactions were responsible for the antigen-antibody association. Per-residue free energy decomposition and computational alanine scanning have identified one hotspot residue for E3 (Y391) and 4 hotspot residues for F1 (M394, Y396, R397 and M398). These hotspot residues were then mutated and evaluated by binding free energy calculations. Phage ELISA assay was carried out on the potential mutants (E3, F1, F1 and F1). The experimental assay showed improved binding affinities of E3 and F1 against HSP16.3 compared with the wild type E3 and F1. This case study has thus showed in silico methods are able to assist in optimisation or improvement of antibody-antigen binding.
结核分枝杆菌(Mtb)16.3kDa 热休克蛋白 16.3(HSP16.3)是一种潜伏相关抗原,可作为潜伏性结核病(TB)诊断和治疗开发的靶点。我们之前开发了针对 HSP16.3 的人 V 结构域抗体(dAb;克隆 E3 和 F1)。在这项工作中,我们应用计算方法对抗体进行优化和设计,以提高与 HSP16.3 的结合亲和力。首先将 V 结构域抗体对接至 HSP16.3 的二聚体形式,并进一步使用分子动力学模拟进行采样。计算得出的 HSP16.3-dAb 复合物的结合自由能表明,非极性相互作用是抗原-抗体结合的原因。残基自由能分解和计算丙氨酸扫描确定了 E3 的一个热点残基(Y391)和 F1 的 4 个热点残基(M394、Y396、R397 和 M398)。然后对这些热点残基进行突变并通过结合自由能计算进行评估。对潜在突变体(E3、F1、F1 和 F1)进行噬菌体 ELISA 检测。实验结果表明,与野生型 E3 和 F1 相比,E3 和 F1 对 HSP16.3 的结合亲和力得到了提高。该案例研究表明,计算方法能够辅助抗体-抗原结合的优化或改进。