Cutting Edge: A New Player in the Alternative Complement Pathway, MASP-1 Is Essential for LPS-Induced, but Not for Zymosan-Induced, Alternative Pathway Activation
Author(s) -
Katalin Paréj,
Andrea Kocsis,
Csenge Enyingi,
Ráhel Dani,
Gábor Oroszlán,
László Beinrohr,
József Dobó,
Péter Závodszky,
Gábor Pál,
Péter Gál
Publication year - 2018
Publication title -
the journal of immunology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.737
H-Index - 372
eISSN - 1550-6606
pISSN - 0022-1767
DOI - 10.4049/jimmunol.1701421
Subject(s) - lectin pathway , complement system , mannan binding lectin , alternative complement pathway , zymosan , proteases , serine protease , chemistry , activator (genetics) , microbiology and biotechnology , ficolin , protease , biochemistry , lectin , biology , immunology , enzyme , immune system , receptor , in vitro
The complement system is a sophisticated network of proteases. In this article, we describe an unexpected link between two linear activation routes of the complement system: the lectin pathway (LP) and the alternative pathway (AP). Mannose-lectin binding-associated serine protease (MASP)-1 is known to be the initiator protease of the LP. Using a specific and potent inhibitor of MASP-1, SGMI-1, as well as other MASP-1 inhibitors with different mechanisms of action, we demonstrated that, in addition to its functions in the LP, MASP-1 is essential for bacterial LPS-induced AP activation, whereas it has little effect on zymosan-induced AP activation. We have shown that MASP-1 inhibition prevents AP activation, as well as attenuates the already initiated AP activity on the LPS surface. This newly recognized function of MASP-1 can be important for the defense against certain bacterial infections. Our results also emphasize that the mechanism of AP activation depends on the activator surface.
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