Klein Anne H, Kuiper Michael J, Burgess Mark, Wickramarachchi Anuradha, Jain Yatish, Bauer Denis C, Wilson Laurence
Australian e-Health Research Centre, Commonwealth Scientific and Industrial Research Organisation (CSIRO), Herston, Queensland 4006, Australia.
Data 61, Commonwealth Scientific and Industrial Research Organisation, Canberra, Australian Capital Territory 2601, Australia.
Nucleic Acids Res. 2025 Jul 7;53(W1):W110-W117. doi: 10.1093/nar/gkaf422.
Adeno-associated virus (AAV) capsid engineering is essential for advancing gene therapy but remains limited by structural complexity and computational constraints. To address these challenges, we developed CapBuild, a cloud-native web server that streamlines AAV capsid prediction, assembly and engineering. CapBuild provides two distinct workflows: a PDB-based pipeline for assembling complete capsids from structural files and a modelling pipeline that constructs capsids from protein sequences via SWISS-MODEL. The platform incorporates icosahedral symmetry through transformation matrices and features an integrated mutation modeller for visualising site-specific mutations across the entire capsid. Additionally, its amino acid localisation tool maps exposed and buried residues, facilitating rational design. Benchmarking against crystal structures demonstrates high structural accuracy, with consistently low RMSD values (0-0.89 Å) and high GDT scores (89.4-100%) across multiple AAV serotypes. CapBuild's interactive visualisation interface, powered by Mol*, enables in-depth structural analysis, making capsid engineering more accessible to researchers. By reducing technical barriers and automating complex modelling tasks, CapBuild facilitates early-stage AAV capsid design, enabling researchers to rationally explore and visualise structural variants for potential use. CapBuild is available at https://capbuild.csiro.au/.
腺相关病毒(AAV)衣壳工程对于推进基因治疗至关重要,但仍受限于结构复杂性和计算限制。为应对这些挑战,我们开发了CapBuild,这是一个基于云的网络服务器,可简化AAV衣壳预测、组装和工程设计。CapBuild提供两种不同的工作流程:一种基于PDB的流程,用于从结构文件组装完整衣壳;另一种建模流程,通过SWISS-MODEL从蛋白质序列构建衣壳。该平台通过变换矩阵纳入二十面体对称性,并具有一个集成的突变建模器,用于可视化整个衣壳上的位点特异性突变。此外,其氨基酸定位工具可绘制暴露和埋藏的残基,便于进行合理设计。与晶体结构的基准测试表明,该平台具有很高的结构准确性,在多种AAV血清型中均具有始终较低的均方根偏差值(0-0.89 Å)和较高的全局距离测试分数(89.4-100%)。由Mol*驱动的CapBuild交互式可视化界面能够进行深入的结构分析,使研究人员更容易进行衣壳工程设计。通过减少技术障碍并自动化复杂的建模任务,CapBuild促进了AAV衣壳的早期设计,使研究人员能够合理地探索和可视化潜在可用的结构变体。可通过https://capbuild.csiro.au/访问CapBuild。