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Strong Clonal Relatedness between Serum and Gut IgA despite Different Plasma Cell Origins.


ABSTRACT: Mucosal antigens induce generation of lamina propria plasma cells (PCs) that secrete dimeric immunoglobulin A (IgA) destined for transport across the epithelium. In addition, blood contains monomeric IgA. To study the relationship between mucosal and systemic antibody responses, we took advantage of celiac disease patient samples for isolation of gut PCs as well as serum IgA and IgG reactive with a gluten-derived peptide or the autoantigen transglutaminase 2. Proteomic analysis of serum IgA revealed antigen-specific V-gene preferences, which matched those found in gut PCs. Further, gut PC CDR-H3 sequences were abundant in serum IgA but also detectable in serum IgG. Our data indicate that the same B cell clones that give rise to gut PCs also contribute to the serum antibody pool. However, serum IgA antibodies had a molecular composition distinct from that of IgA antibodies secreted in the gut, suggesting that individual B cell clones give rise to different PC populations.

SUBMITTER: Iversen R 

PROVIDER: S-EPMC5603730 | biostudies-literature | 2017 Sep

REPOSITORIES: biostudies-literature

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Strong Clonal Relatedness between Serum and Gut IgA despite Different Plasma Cell Origins.

Iversen Rasmus R   Snir Omri O   Stensland Maria M   Kroll José E JE   Steinsbø Øyvind Ø   Korponay-Szabó Ilma R IR   Lundin Knut E A KEA   de Souza Gustavo A GA   Sollid Ludvig M LM  

Cell reports 20170901 10


Mucosal antigens induce generation of lamina propria plasma cells (PCs) that secrete dimeric immunoglobulin A (IgA) destined for transport across the epithelium. In addition, blood contains monomeric IgA. To study the relationship between mucosal and systemic antibody responses, we took advantage of celiac disease patient samples for isolation of gut PCs as well as serum IgA and IgG reactive with a gluten-derived peptide or the autoantigen transglutaminase 2. Proteomic analysis of serum IgA reve  ...[more]

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