Mast Cell Degranulation Increases Mouse Mast Cell Protease 4-Dependent Vasopressor Responses to Big Endothelin-1 But

Laurence Vincent1, Catherine Lapointe1, Modou Lo1

  • 1Department of Pharmacology and Physiology, Faculté de Médecine et des Sciences de la Santé, Université de Sherbrooke, Sherbrooke, Quebec, Canada (L.V., C.L., M.L., P.D.-J.); PhenoSwitch Bioscience Inc., Sherbrooke, Quebec, Canada (H.G.); Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden (G.P.); Department of Innovative Medicine, Osaka Medical College, Osaka, Japan (S.T.); and Department of Surgery, Division of Urology, Université de Sherbrooke, Sherbrooke, Quebec, Canada (R.D.).

Insights

Mast cell activation enhances the blood pressure effects of big endothelin-1 (ET-1) via mouse mast cell protease 4 (mMCP-4). Mast cell stabilization, however, reduces these ET-1 pressor responses, highlighting mast cell stability

Area of Science:

  • Cardiovascular Pharmacology
  • Mast Cell Biology
  • Protease Function

Background:

  • Mouse mast cell protease 4 (mMCP-4) is a serine protease involved in endothelin-1 (ET-1) synthesis.
  • mMCP-4's role in ET-1-mediated pressor responses requires further investigation.
  • Mast cell degranulation and stabilization are key modulators of protease activity.

Purpose of the Study:

  • To investigate the impact of mast cell degranulation and stabilization on mMCP-4-dependent pressor responses.
  • To determine the effect of mast cell modulation on big ET-1 and angiotensin I (Ang I) vasoactivity.
  • To elucidate the role of mMCP-4 in ET-1 conversion and cardiovascular effects.

Main Methods:

  • Utilized anesthetized wild-type (WT) and mMCP-4 knockout mice.
  • Administered big ET-1, Ang I, and an Ang I analog.
  • Induced mast cell degranulation (compound 48/80) or stabilization (cromolyn).
  • Measured pressor responses and mMCP-4 activity using fluorogenic substrates and in vitro ET-1 conversion assays.

Main Results:

  • Mast cell degranulation enhanced, while stabilization repressed, big ET-1-induced pressor responses in WT mice, dependent on mMCP-4.
  • mMCP-4 activity and ET-1 conversion were modulated by mast cell degranulation/stabilization in isolated mast cells.
  • Ang I pressor responses were unaffected by mast cell modulation, but responses to an Ang I analog were potentiated by degranulation.

Conclusions:

  • Mast cell activation significantly enhances mMCP-4-dependent big ET-1 vasoactivity in mice.
  • Mast cell stability plays a crucial role in the cardiovascular pharmacology of big ET-1.
  • The effects of mast cell modulation are specific to ET-1 pathways and not Ang I pathways.