Related Experiment Video
Updated: Dec 2, 2025

Analyzing the Functions of Mast Cells In Vivo Using 'Mast Cell Knock-in' Mice
Published on: May 27, 2015
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.).
Abstract:
Mouse mast cell protease 4 (mMCP-4), the murine functional analog to the human chymase, is a serine protease synthesized and stored in mast cell secretory granules. Our previous studies reported physiologic and pathologic roles for mMCP-4 in the maturation and synthesis of the vasoactive peptide endothelin-1 (ET-1) from its precursor, big ET-1. The aim of this study was to investigate the impact of mast cell degranulation or stabilization on mMCP-4-dependent pressor responses after the administration of big ET-1 or angiotensin I (Ang I). In anesthetized mice, mast cell degranulation induced by compound 48/80 (C48/80) or stabilization by cromolyn enhanced or repressed, respectively, the dose-dependent vasopressor responses to big ET-1 in wild-type (WT) mice but not in mMCP-4 knockout mice in a chymase inhibitor (TY-51469)-sensitive fashion. In addition, mMCP-4-dependent hydrolysis of the fluorogenic substrate Suc-Leu-Leu-Val-Tyr-7-amino-4-methylcoumarin was depleted or enhanced in peritoneal mast cells isolated from mice pretreated with C48/80 or cromolyn, respectively. Furthermore, C48/80 or cromolyn markedly increased or abolished, respectively, ET-1 (1-31) conversion from exogenous big ET-1 in WT mice peritoneal fluid-isolated mast cells, in vitro. Finally, the vasopressor responses to Ang I were unaffected by mast cell activation or stabilization, whereas those induced by the angiotensin-converting enzyme-resistant Ang I analog, [Pro11, D-Ala12] Ang I, were potentiated by C48/80. Altogether, the present study shows that mast cell activation enhances the mMCP-4-dependent vasoactive properties of big ET-1 but not Ang I in the mouse model. SIGNIFICANCE STATEMENT: The current work demonstrates a significant role for mast cell stability in the cardiovascular pharmacology of big endothelin-1 but not angiotensin I in the murine systemic circulation.
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.
More Related Videos
11:31Isolation of Peritoneum-derived Mast Cells and Their Functional Characterization with Ca2+-imaging and Degranulation Assays
Published on: July 4, 2018
08:25An Ex vivo Mast Cell Degranulation Assay using Crude Peritoneal Exudate Cells and Natural Antigen Stimulation
Published on: April 27, 2021