4.5 Article

Serum MASP-1 in complex with MBL activates endothelial cells

Journal

MOLECULAR IMMUNOLOGY
Volume 59, Issue 1, Pages 39-45

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.molimm.2014.01.001

Keywords

Complement lectin pathway; MBL-associated serine proteases; Endothelial cell; Cell activation; Protease activated receptor

Funding

  1. Hungarian Scientific Research Fund (OTKA) [NK100834, NK 100769, K 108642, K 100684]
  2. EMBO ASTF [498-2011]
  3. Bolyai Janos Research Fellowship [BO/00218/10/8]

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The complement system plays an important role in the induction of inflammation. In this study we demonstrate that the initiation complexes of the lectin pathway, consisting of mannose-binding lectin (MBL) and associated serine proteases (MASPs) elicit Ca2+ signaling in cultured endothelial cells (HUVECs). This is in agreement with our previous results showing that the recombinant catalytic fragment of MASP-1 activates endothelial cells by cleaving protease activated receptor 4. Two other proteases, MASP-2 and MASP-3 are also associated with MBL. Earlier we showed that recombinant catalytic fragment of MASP-2 cannot activate HUVECs, and in this study we demonstrate that the same fragment of MASP-3 has also no effect. We find the same to be the case if we use recombinant forms of the N-terminal parts of MASP-1 and MASP-2 which only contain non-enzymatic domains. Moreover, stable zymogen mutant form of MASP-1 was also ineffective to stimulate endothelial cells, which suggests that in vivo MASP-1 have the ability to activate endothelial cells directly as well as to activate the lectin pathway simultaneously. We show that among the components of the MBL-MASPs complexes only MASP-1 is able to trigger response in HUVECs and the proteolytic activity of MASP-1 is essential. Our results strengthen the view that MASP-1 plays a central role in the early innate immune response. (c) 2014 Elsevier Ltd. All rights reserved.

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