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The T-cell receptor (TCR) repertoire is formed by random recombinations of genomic precursor elements; the resulting combinatorial diversity renders unlikely extensive TCR sharing between individuals. Here, we studied CDR3β amino acid sequence sharing in a repertoire-wide manner, using high-throughput TCR-seq in 28 healthy mice. We uncovered hundreds of public sequences shared by most mice. Public CDR3 sequences, relative to private sequences, are two orders of magnitude more abundant on average, express restricted V/J segments, and feature high convergent nucleic acid recombination. Functionally, public sequences are enriched for MHC-diverse CDR3 sequences that were previously associated with autoimmune, allograft, and tumor-related reactions, but not with anti-pathogen-related reactions. Public CDR3 sequences are shared between mice of different MHC haplotypes, but are associated with different, MHC-dependent, V genes. Thus, despite their random generation process, TCR repertoires express a degree of uniformity in their post-genomic organization. These results, together with numerical simulations of TCR genomic rearrangements, suggest that biases and convergence in TCR recombination combine with ongoing selection to generate a restricted subset of self-associated, public CDR3 TCR sequences, and invite reexamination of the basic mechanisms of T-cell repertoire formation.
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http://dx.doi.org/10.1101/gr.170753.113 | DOI Listing |
Int Immunopharmacol
September 2025
Center for Genetic Engineering and Biotechnology, Cubanacan, 10600 Havana, POBox 6162, Cuba. Electronic address:
Vascular endothelial growth factor (VEGF) is a key player in the development and progression of several diseases, most notably cancer and retinal disorders. Over the last twenty years, VEGF has emerged as a significant therapeutic target for these conditions. This study reports the isolation and characterization of a fully synthetic, humanized, affinity-matured single-domain antibody fragment (VHH) designed to target VEGF.
View Article and Find Full Text PDFT cell receptor (TCR) specificity is central to the efficacy of T cell therapies, yet scalable methods to map how TCR sequences shape antigen recognition remain limited. To address this, we introduce VelociRAPTR, a library-on-library approach that combines yeast-displayed TCR libraries with pMHC-displaying virus-like particles (pMHC-VLPs) to rapidly screen millions of TCR-antigen interactions. We show that pMHC-VLPs efficiently bind TCRs on yeast and generate equivalent data to recombinantly produced pMHC protein.
View Article and Find Full Text PDFImmunol Invest
September 2025
Department of Dermatology, Hunan Key Laboratory of Medical Epigenomics, The Second Xiangya Hospital of Central South University, Changsha, Hunan, China.
Objective: To examine whether features of the B cell receptor (BCR) IgG repertoire correlate with disease activity and clinical phenotypes in systemic autoimmune diseases (SAIDs).
Methods: High-throughput sequencing was performed on IgG heavy chain repertoires from 138 patients with SAIDs, including systemic lupus erythematosus (SLE), rheumatoid arthritis (RA), scleroderma (SSc), and idiopathic inflammatory myopathy (IIM), as well as 36 healthy controls (HC). We analyzed V/D/J gene usage, clonal distribution and diversity, CDR3 length distribution and amino acid usage, and the correlation between specific BCR features and clinical features.
Front Immunol
September 2025
Drug Discovery and Development, Chantibody Therapeutics, Menlo Park, CA, United States.
Introduction: VHHs, or nanobodies, are distinguished by their compact size, high stability, and unique ability to selectively target specific epitopes. The CDR3 region in VHHs, which plays a crucial role in antigen binding, exhibits significant diversity and varies among species.
Method: This study systematically examined CDR3 length dependent patterns by analyzing NGS sequences from the PBMCs of Alpacas, Llamas and Bactrians, in conjunction with VHH structure data from the public database.
Melanoma Res
August 2025
Department of Molecular Medicine, Morsani College of Medicine, University of South Florida.
Metastatic melanoma is characterized by high rates of treatment resistance. While various factors have been studied for their prognostic significance, this study evaluated the potential prognostic value of the intrinsic disorder of T-cell receptor beta (TRB) polypeptides. TRB recombination sequencing reads were extracted from tumor RNA-seq files representing The Cancer Genome Atlas, Skin Cutaneous Melanoma dataset, and genomics files representing the National Institutes of Health, phs002683 dataset.
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