Mouse mast cell proteases 4 and 5 mediate epidermal injury through disruption of tight junctions

Lora G Bankova1, Cecilia Lezcano, Gunnar Pejler

  • 1Division of Rheumatology, Immunology and Allergy, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115;

Insights

Mast cells (MCs) rapidly degranulate after thermal injury. Specific proteases, mouse mast cell proteases (mMCP)4 and mMCP5, are crucial for disrupting skin barrier function and epidermal tight junctions.

Area of Science:

  • Dermatology
  • Immunology
  • Cell Biology

Background:

  • Mast cells (MCs) play a role in thermal injury responses.
  • Mouse mast cell proteases (mMCP)4 and mMCP5 have nonredundant functions in injury models.

Purpose of the Study:

  • To investigate the early events of mast cell activation following thermal injury.
  • To determine the role of mMCP4 and mMCP5 in mast cell degranulation and skin barrier disruption.

Main Methods:

  • Histological analysis of mouse skin at various time points post-thermal injury.
  • Electron microscopy to examine mast cell morphology and intercellular spaces.
  • Immunodetection of tight junction protein claudin 4.

Main Results:

  • Mast cell degranulation occurred within 2 minutes of thermal injury in wild-type and knockout mice.
  • Epidermal thickening was observed only in wild-type mice.
  • Tight junction disruption was evident in wild-type mice but not in mMCP4- or mMCP5-deficient mice.
  • Claudin 4 levels significantly decreased in wild-type and mMCP5-deficient mice, but not in mMCP4-deficient mice.

Conclusions:

  • Thermal injury triggers immediate, zonal mast cell degranulation.
  • mMCP4 and mMCP5 are essential for mast cell-mediated disruption of epidermal tight junctions.
  • These findings highlight a novel mechanism of skin barrier impairment following burns.

Related Concept Videos

Role of Matrix Metalloproteases in Degradation of ECM01:23

Role of Matrix Metalloproteases in Degradation of ECM

Matrix metalloproteases (MMPs) are enzymes involved in the hydrolysis of proteins and glycoproteins of the extracellular matrix. MMPs are essential for the migration and proliferation of cells through the dense matrix network, throughout embryonic development, and throughout morphogenesis. The first MMP activity discovered was a collagenase in a tadpole's tail undergoing metamorphosis. The active collagen deposition and modifications lead to the morphogenesis of tadpoles into the adult...
2.9K
Cell-matrix's Response to Mechanical Forces01:13

Cell-matrix's Response to Mechanical Forces

In animal cells, the extracellular matrix allows cells within tissues to withstand external stresses and transmits signals from the outside of the cell to the inside. The extracellular matrix is extensive, and its composition varies between different types of tissues. For example, the reticular fibers and ground substance make up the ECM in loose connective tissue, while collagen and bone minerals make up the ECM of bone tissue. 
Anchoring junctions mechanically attach a cell to the...
2.7K
Anchoring Junctions01:03

Anchoring Junctions

Anchoring junctions are multiprotein complexes that help cells connect to other cells and the extracellular matrix. Anchoring junctions are present on the lateral and basal surfaces of cells, providing strong and flexible connections. Focal adhesions are often formed due to cell interactions with the ECM substrata, which initiate signal transduction via kinase cascades and other mechanisms. Together, they provide stability and tissue integrity. There are three types of anchoring junctions:...
4.3K
Inflammation01:38

Inflammation

Overview
46.6K