BCR repertoire analysis and cloning of antibody candidates targeting native and Asp7-isomerized beta-amyloid
Computational approaches are increasingly used to predict monoclonal antibody (mAb) candidates from BCR-seq datasets. However, the reliable identification of B cells encoding antibodies against rare antigenic epitopes remains challenging. We employed a repertoire-guided workflow combining antigen-tetramer sorting of B cells from immunized mice, followed by low-input bulk BCR-seq yielding informative clonal repertoires. Clustering and supporting somatic hypermutation (SHM) lineage analysis allowed us to identify IGH and IGK clonotypes potentially targeting {beta}-amyloid and its isoAsp7 variant (isoD7-A{beta}1-16), implicated in Alzheimers disease. We observed recurrent IGHV8-12 and IGKV1-117 usage, consistent with canonical mouse anti-A{beta} responses. Focusing on isoD7-A{beta} binders, we selected ten candidate IGH-IGK pairs for recombinant expression. One recombinant mAb demonstrated preferential binding to isoD7-A{beta} by microscale thermophoresis, supporting the feasibility of the approach but underscoring the challenge of accurate chain pairing. This highlights the potential of bioinformatic workflows to identify mAbs even under low-input conditions.