Identification of common and distinct origins of human serum and breastmilk IgA1 by mass spectrometry-based clonal profiling

Publication date

2023-01

Authors

Dingess, Kelly AISNI 0000000492852971
Hoek, MaxISNI 0000000492869909
van Rijswijk, Danique M H
Tamara, SemenISNI 000000049296085X
den Boer, Maurits ArijORCID 0000-0002-2608-9395ISNI 0000000493047288
Veth, Tim S.ISNI 0000000507779851
Damen, J. Mirjam A.ISNI 0000000391555601
Barendregt, ArjanISNI 0000000419432815
Romijn, Michelle
Juncker, Hannah G

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Document Type

Article
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Abstract

The most abundant immunoglobulin present in the human body is IgA. It has the highest concentrations at the mucosal lining and in biofluids such as milk and is the second most abundant class of antibodies in serum. We assessed the structural diversity and clonal repertoire of IgA1-containing molecular assemblies longitudinally in human serum and milk from three donors using a mass spectrometry-based approach. IgA-containing molecules purified from serum or milk were assessed by the release and subsequent analysis of their Fab fragments. Our data revealed that serum IgA1 consists of two distinct structural populations, namely monomeric IgA1 (∼80%) and dimeric joining (J-) chain coupled IgA1 (∼20%). Also, we confirmed that IgA1 in milk is present solely as secretory (S)IgA, consisting of two (∼50%), three (∼33%) or four (∼17%) IgA1 molecules assembled with a J-chain and secretory component (SC). Interestingly, the serum and milk IgA1-Fab repertoires were distinct between monomeric, and J-chain coupled dimeric IgA1. The serum dimeric J-chain coupled IgA1 repertoire contained several abundant clones also observed in the milk IgA1 repertoire. The latter repertoire had little to no overlap with the serum monomeric IgA1 repertoire. This suggests that human IgA1s have (at least) two distinct origins; one of these produces dimeric J-chain coupled IgA1 molecules, shared in human serum and milk, and another produces monomeric IgA1 ending up exclusively in serum.

Keywords

Antigen binding fragment, Clonal repertoires, Immunoglobulin A1, Serum, human milk, Immunology and Allergy, Immunology, Infectious Diseases, SDG 3 - Good Health and Well-being

Citation

Dingess, K A, Hoek, M, van Rijswijk, D M H, Tamara, S, den Boer, M A, Veth, T, Damen, M J A, Barendregt, A, Romijn, M, Juncker, H G, van Keulen, B J, Vidarsson, G, van Goudoever, J B, Bondt, A & Heck, A J R 2023, 'Identification of common and distinct origins of human serum and breastmilk IgA1 by mass spectrometry-based clonal profiling', Cellular and Molecular Immunology, vol. 20, no. 1, pp. 26-37. https://doi.org/10.1038/s41423-022-00954-2