Table_3_Evolution of surrogate light chain in tetrapods and the relationship between lengths of CDR H3 and VpreB tails.xlsx

التفاصيل البيبلوغرافية
العنوان: Table_3_Evolution of surrogate light chain in tetrapods and the relationship between lengths of CDR H3 and VpreB tails.xlsx
المؤلفون: Jeannine A. Ott, Jeremy K. Haakenson, Abigail R. Kelly, Claire Christian, Michael F. Criscitiello, Vaughn V. Smider
سنة النشر: 2022
المجموعة: Frontiers: Figshare
مصطلحات موضوعية: Immunology, Applied Immunology (incl. Antibody Engineering, Xenotransplantation and T-cell Therapies), Autoimmunity, Cellular Immunology, Humoural Immunology and Immunochemistry, Immunogenetics (incl. Genetic Immunology), Innate Immunity, Transplantation Immunology, Tumour Immunology, Immunology not elsewhere classified, Genetic Immunology, Animal Immunology, Veterinary Immunology, VpreB, Lambda5, pre-B cell receptor, surrogate light chain, pre-T cell receptor alpha, evolution
الوصف: In the mammalian immune system, the surrogate light chain (SLC) shapes the antibody repertoire during B cell development by serving as a checkpoint for production of functional heavy chains (HC). Structural studies indicate that tail regions of VpreB contact and cover the third complementarity-determining region of the HC (CDR H3). However, some species, particularly bovines, have CDR H3 regions that may not be compatible with this HC-SLC interaction model. With immense structural and genetic diversity in antibody repertoires across species, we evaluated the genetic origins and sequence features of surrogate light chain components. We examined tetrapod genomes for evidence of conserved gene synteny to determine the evolutionary origin of VpreB1, VpreB2, and IGLL1, as well as VpreB3 and pre-T cell receptor alpha (PTCRA) genes. We found the genes for the SLC components (VpreB1, VpreB2, and IGLL1) only in eutherian mammals. However, genes for PTCRA occurred in all amniote groups and genes for VpreB3 occurred in all tetrapod groups, and these genes were highly conserved. Additionally, we found evidence of a new VpreB gene in non-mammalian tetrapods that is similar to the VpreB2 gene of eutherian mammals, suggesting VpreB2 may have appeared earlier in tetrapod evolution and may be a precursor to traditional VpreB2 genes in higher vertebrates. Among eutherian mammals, sequence conservation between VpreB1 and VpreB2 was low for all groups except rabbits and rodents, where VpreB2 was nearly identical to VpreB1 and did not share conserved synteny with VpreB2 of other species. VpreB2 of rabbits and rodents likely represents a duplicated variant of VpreB1 and is distinct from the VpreB2 of other mammals. Thus, rabbits and rodents have two variants of VpreB1 (VpreB1-1 and VpreB1-2) but no VpreB2. Sequence analysis of VpreB tail regions indicated differences in sequence content, charge, and length; where repertoire data was available, we observed a significant relationship between VpreB2 tail length and maximum DH length. We ...
نوع الوثيقة: dataset
اللغة: unknown
Relation: https://figshare.com/articles/dataset/Table_3_Evolution_of_surrogate_light_chain_in_tetrapods_and_the_relationship_between_lengths_of_CDR_H3_and_VpreB_tails_xlsx/21333018
DOI: 10.3389/fimmu.2022.1001134.s004
الاتاحة: https://doi.org/10.3389/fimmu.2022.1001134.s004
https://figshare.com/articles/dataset/Table_3_Evolution_of_surrogate_light_chain_in_tetrapods_and_the_relationship_between_lengths_of_CDR_H3_and_VpreB_tails_xlsx/21333018
Rights: CC BY 4.0
رقم الانضمام: edsbas.1A030F20
قاعدة البيانات: BASE
الوصف
DOI:10.3389/fimmu.2022.1001134.s004