A Single Human VH-gene Allows for a Broad-Spectrum Antibody Response Targeting Bacterial Lipopolysaccharides in the Blood

Summary: B cell receptors (BCRs) display a combination of variable (V)-gene-encoded complementarity determining regions (CDRs) and adaptive/hypervariable CDR3 loops to engage antigens. It has long been proposed that the former tune for recognition of pathogens or groups of pathogens. To experimental...

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Bibliographic Details
Main Authors: Maya Sangesland, Ashraf S. Yousif, Larance Ronsard, Samuel W. Kazer, Alex Lee Zhu, G. James Gatter, Matthew R. Hayward, Ralston M. Barnes, Maricel Quirindongo-Crespo, Daniel Rohrer, Nils Lonberg, Douglas Kwon, Alex K. Shalek, Daniel Lingwood
Format: Article
Language:English
Published: Elsevier 2020-08-01
Series:Cell Reports
Subjects:
BCR
VH
Online Access:http://www.sciencedirect.com/science/article/pii/S2211124720310500
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Summary:Summary: B cell receptors (BCRs) display a combination of variable (V)-gene-encoded complementarity determining regions (CDRs) and adaptive/hypervariable CDR3 loops to engage antigens. It has long been proposed that the former tune for recognition of pathogens or groups of pathogens. To experimentally evaluate this within the human antibody repertoire, we perform immune challenges in transgenic mice that bear diverse human CDR3 and light chains but are constrained to different human VH-genes. We find that, of six commonly deployed VH sequences, only those CDRs encoded by IGHV1-2∗02 enable polyclonal antibody responses against bacterial lipopolysaccharide (LPS) when introduced to the bloodstream. The LPS is from diverse strains of gram-negative bacteria, and the VH-gene-dependent responses are directed against the non-variable and universal saccrolipid substructure of this antigen. This reveals a broad-spectrum anti-LPS response in which germline-encoded CDRs naturally hardwire the human antibody repertoire for recognition of a conserved microbial target.
ISSN:2211-1247