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Ab-Ligity: Identifying sequence-dissimilar antibodies that bind to the same epitope

Ab-Ligity: Identifying sequence-dissimilar antibodies that bind to the same epitope

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Solving the structure of an antibody-antigen complex gives atomic level information of the interactions between an antibody and its antigen, but such structures are expensive and hard to obtain. Alternative experimental sources include epitope mapping and binning experiments which can be used as a surrogate to identify key interacting residues. However, their resolution is usually not sufficient to identify if two antibodies have identical interactions. Computational approaches to this problem have so far been based on the premise that antibodies with similar sequences behave similarly. Such approaches will fail to identify sequence-distant antibodies that target the same epitope. We present Ab-Ligity, a structure-based similarity measure tailored to antibody-antigen interfaces. Using predicted paratopes on model antibody structures, we assessed its ability to identify those antibodies that target highly similar epitopes. Most antibodies adopting similar binding modes can be identified from sequence similarity alone, using methods such as clonotyping. In the challenging subset of antibodies whose sequences differ significantly, Ab-Ligity is still able to predict antibodies that would bind to highly similar epitopes (precision of 0.95 and recall of 0.69). We compared Ab-Ligity’s performance to an existing tool for comparing general protein interfaces, InterComp, and showed improved performance on antibody cases alongside a significant speed-up. These results suggest that Ab-Ligity will allow the identification of diverse (sequence-dissimilar) antibodies that bind to the same epitopes from large datasets such as immune repertoires. The tool is available at http://opig.stats.ox.ac.uk/resources.

Lewis Alan P.、Snowden James、Deane Charlotte M.、Shi Jiye、Wong Wing Ki、Georges Guy、Robinson Sarah A.、Bujotzek Alexander、Taddese Bruck

Data and Computational Sciences, GlaxoSmithKline Research and DevelopmentUCB PharmaDepartment of Statistics, University of OxfordUCB PharmaDepartment of Statistics, University of OxfordRoche Pharma Research and Early Development, Large Molecule Research, Roche Innovation Center MunichDepartment of Statistics, University of OxfordRoche Pharma Research and Early Development, Large Molecule Research, Roche Innovation Center MunichDiscovery Sciences, BioPharmaceuticals

10.1101/2020.03.24.004051

生物科学研究方法、生物科学研究技术基础医学生物化学

Lewis Alan P.,Snowden James,Deane Charlotte M.,Shi Jiye,Wong Wing Ki,Georges Guy,Robinson Sarah A.,Bujotzek Alexander,Taddese Bruck.Ab-Ligity: Identifying sequence-dissimilar antibodies that bind to the same epitope[EB/OL].(2025-03-28)[2025-05-02].https://www.biorxiv.org/content/10.1101/2020.03.24.004051.点此复制

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