C1q/MASP Complexes—Hybrid Complexes of Classical and Lectin Pathway Proteins Are Found in the Circulation

Anne Rosbjerg*, Tereza Alica Plchová, Rafael Bayarri-Olmos, Bettina Eide Holm, Ida Sandau Pedersen, Mikkel Ole Skjoedt, Peter Garred

*Corresponding author af dette arbejde

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

Complement pathways, traditionally regarded as separate entities in vitro, are increasingly noted for cross-communication and bypass mechanisms. Among these, the MBL/ficolin/CL-associated serine protease (MASP)-3, a component of lectin pathway pattern recognition molecules, has shown the ability to process critical substrates such as pro-factor D and insulin growth factor binding protein-5. Given shared features between lectin pathway pattern recognition molecules and C1q from the classical pathway, we hypothesized that C1q might be a viable in vivo binding partner for the MASPs. We used microscale thermophoresis, ELISA, and immunoprecipitation assays to detect C1q/MASP complexes and functionally assessed the complexes through enzymatic cleavage assays. C1q/MASP-3 complexes were detected in human serum and correlated well with MASP-3 serum levels in healthy individuals. The binding affinity between MASP-3 and C1q in vitro was in the nanomolar range, and the interaction was calcium-dependent, as demonstrated by their dissociation in the presence of EDTA. Furthermore, most of the circulating C1q-bound MASP-3 was activated. Based on immunoprecipitation, also C1q/MASP-2 complexes appeared to be present in serum. Finally, C1q/MASP-2 and C1q/MASP-3 in vitro complexes were able to cleave C4 and pro-factor D, respectively. Our study reveals the existence of C1q/MASP complexes in the circulation of healthy individuals, and both C1q/MASP-2 and C1q/MASP-3 complexes display proteolytic activity. Hence, this study uncovers a crosstalk route between complement pathways not previously described.

OriginalsprogEngelsk
TidsskriftJournal of Immunology
Vol/bind213
Udgave nummer7
Sider (fra-til)998-1007
ISSN0022-1767
DOI
StatusUdgivet - 2024

Bibliografisk note

Funding Information:
The work was carried out as a part of the BRIDGE\u2014Translational Excellence Programme (bridge.ku.dk) at the Faculty of Health and Medical Sciences, University of Copenhagen, supported by Novo Nordisk Fonden Grant NNF18SA0034956. This work was also supported by the K\u00F8bmand i Odense Johann og Hanne Weimann, f. Seedorffs grant, and by Svend Andersen Fonden Grant PG2022. We thank Karsten Skj\u00F8dt from the Department of Clinical Immunology at the Copenhagen University Hospital for assistance and expertise in developing mAbs.

Funding Information:
The work was carried out as a part of the BRIDGE\u2014Translational Excellence Programme (bridge.ku.dk) at the Faculty of Health and Medical Sciences, University of Copenhagen, supported by Novo Nordisk Fonden Grant NNF18SA0034956. This work

Funding Information:
was also supported by the K\u00F8bmand i Odense Johann og Hanne Weimann, f. Seedorffs grant, and by Svend Andersen Fonden Grant PG2022.

Publisher Copyright:
Copyright © 2024 by The American Association of Immunologists, Inc.

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