The complex formation of MASP-3 with pattern recognition molecules of the lectin complement pathway retains MASP-3 in

Kohei Kusakari1, Takeshi Machida1, Yumi Ishida1

  • 1Department of Immunology, Fukushima Medical University, Fukushima, Japan.

Frontiers in Immunology
|September 2, 2022
PubMed

Insights

Mannose-binding lectin-associated serine protease (MASP)-3 rapidly activates in circulation, independent of pattern recognition molecule complex formation. This study reveals MASP-3

Area of Science:

  • Immunology and host defense mechanisms.
  • Complement system biology and activation pathways.

Background:

  • The complement system is crucial for host defense, with three activation pathways.
  • Mannose-binding lectin-associated serine protease (MASP)-3 is active and essential for the alternative pathway (AP) via complement factor D (FD) activation.
  • MASP-3, like MASP-1 and MASP-2, forms complexes with lectin pathway pattern recognition molecules (LP-PRMs), but its activation mechanism and the role of complex formation remain unclear.

Purpose of the Study:

  • To investigate the in vivo activation kinetics and efficiency of MASP-3.
  • To determine if complex formation between MASP-3 and LP-PRMs is required for MASP-3 activation.
  • To assess the role of LP-PRM complex formation in MASP-3's circulatory retention.

Main Methods:

  • Generation of wild-type (WT) and mutant recombinant mouse MASP-3 proteins (rmMASP-3-PAs) with substitutions in CUB domains responsible for LP-PRM binding.
  • In vivo assessment of complex formation between WT/mutant rmMASP-3-PAs and LP-PRMs in mice.
  • Kinetic analysis of rmMASP-3-PA activation and clearance from circulation over 48 hours.
  • Evaluation of AP activity restoration in MASP-3-deficient mouse sera after rmMASP-3-PA administration.

Main Results:

  • Mutant rmMASP-3-PAs exhibited significantly reduced in vivo complex formation with LP-PRMs compared to WT.
  • Both WT and mutant rmMASP-3-PAs were rapidly cleaved into active forms within 30 minutes post-administration, with no significant difference in activation efficiency.
  • All administered rmMASP-3-PAs fully restored AP activity in MASP-3-deficient sera.
  • Mutant rmMASP-3-PAs showed faster clearance from circulation than WT rmMASP-3-PA.

Conclusions:

  • Complex formation of MASP-3 with LP-PRMs is not necessary for its in vivo activation or functional efficiency.
  • MASP-3 undergoes rapid activation and clearance in circulation.
  • Complex formation with LP-PRMs may play a role in the long-term retention of MASP-3 in the circulation.

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