Recently, we identified that diverse heavy chain (H-chain)-only IgG is spontaneously produced in light chain (L-chain)-deficient mice (L(-/-) with silenced kappa and lambda loci) despite a block in B cell development. In murine H-chain IgG, the first Cgamma exon, C(H)1, is removed after DNA rearrangement and secreted polypeptides are comparable with camelid-type H-chain IgG. Here we show that L(-/-) mice generate a novel class of H-chain Ig with covalently linked alpha chains, not identified in any other healthy mammal. Surprisingly, diverse H-chain-only IgA can be released from B cells at levels similar to conventional IgA and is found in serum and sometimes in milk and saliva. Surface IgA without L-chain is expressed in B220(+) spleen cells, which exhibited a novel B cell receptor, suggesting that associated conventional differentiation events occur. To facilitate the cellular transport and release of H-chain-only IgA, chaperoning via BiP association seems to be prevented as only alpha chains lacking C(H)1 are released from the cell. This appears to be accomplished by imprecise class-switch recombination (CSR) from Smu into the alpha constant region, which removes all or part of the Calpha1 exon at the genomic level.

Download full-text PDF

Source
http://dx.doi.org/10.1093/intimm/dxp062DOI Listing

Publication Analysis

Top Keywords

h-chain igg
8
alpha chains
8
h-chain-only iga
8
iga
5
light chain-deficient
4
chain-deficient mice
4
mice produce
4
produce novel
4
novel multimeric
4
multimeric heavy-chain-only
4

Similar Publications

Islet autoantibodies, including those directed at insulin, predict type 1 diabetes (T1D) in mice and humans and signal immune tolerance breach by B lymphocytes. High-affinity insulin autoantibodies and T follicular helper cell involvement implicate germinal centers (GCs) in T1D. The VH125SD BCR transgenic model, in which 1-2% of peripheral B lymphocytes recognize insulin, enables direct study of insulin-binding B cells.

View Article and Find Full Text PDF
Article Synopsis
  • Current short-read AIRR-seq methods have limitations in resolving the constant (C) region of antibody transcripts, prompting the development of a new approach called FLAIRR-seq, which achieves 99.99% accuracy in generating human antibody heavy chain transcripts.
  • FLAIRR-seq was validated against standard methods, showing comparable results while revealing previously undocumented heavy chain gene features and enabling detailed characterization of antibody gene diversity.
  • This new method identified 32 unique IGHC alleles in ten individuals, with 87% being uncharacterized, thus providing the most comprehensive analysis of antibody repertoires to date.
View Article and Find Full Text PDF

Tumor-Associated CD19+CD39- B Regulatory Cells Deregulate Class-Switch Recombination to Suppress Antibody Responses.

Cancer Immunol Res

March 2023

Division of Molecular Medicine, Bose Institute, Calcutta Improvement Trust Scheme VII M, Kolkata, India.

B cells are an essential component of humoral immunity. Their primary function is to mount antigen-specific antibody responses to eliminate pathogens. Despite an increase in B-cell number, we found that serum-IgG levels were low in patients with breast cancer.

View Article and Find Full Text PDF

The adaptive immune receptor repertoire consists of the entire set of an individual's BCRs and TCRs and is believed to contain a record of prior immune responses and the potential for future immunity. Analyses of TCR repertoires via deep learning (DL) methods have successfully diagnosed cancers and infectious diseases, including coronavirus disease 2019. However, few studies have used DL to analyze BCR repertoires.

View Article and Find Full Text PDF

There is a lack of vaccine against human cysticercosis, thus making a huge population at the risk of infection. In this study, we chose a novel potential antigen molecule Taenia solium 14-3-3.3 (Ts14-3-3.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!