Proteolytic Activity Present in House-Dust-Mite Extracts Degrades ENA-78/CXCL5 and Reduces Neutrophil Migration

Laura Keglowich1, Michael Tamm2, Jun Zhong1

  • 1Department of Biomedicine, University Hospital Basel, Hebelstrasse 20, 4031 Basel, Switzerland.

Journal of Allergy
|June 3, 2014
PubMed

Insights

House dust mite (HDM) proteases degrade ENA-78/CXCL5, a key chemokine. This degradation by HDM allergens may impact airway inflammation and angiogenesis in asthma patients.

Area of Science:

  • Immunology
  • Cell Biology
  • Respiratory Medicine

Background:

  • Bronchial smooth muscle cells (BSMC) release pro-inflammatory and pro-angiogenic factors like VEGF and CXC-chemokines.
  • CXC-chemokines are crucial for neutrophil recruitment and activation in inflammatory sites.
  • House dust mite (HDM) allergens can trigger asthma exacerbations via protease-dependent pathways.

Purpose of the Study:

  • To investigate the impact of HDM extract on the release of pro-angiogenic and pro-inflammatory cytokines from BSMC.
  • To understand the role of HDM proteases in modulating cytokine levels and neutrophil migration.

Main Methods:

  • Human primary BSMC were stimulated with HDM extract, with and without fetal calf serum (FCS).
  • Angiogenic cytokines were quantified using antibody arrays and ELISA.
  • Neutrophil migration was assessed using a Boyden chamber assay.

Main Results:

  • HDM extract significantly reduced ENA-78/CXCL5 protein levels in BSMC-conditioned medium, an effect reversed by FCS.
  • HDM extracts degraded recombinant ENA-78/CXCL5, but this degradation was inhibited by the serine protease AEBSF.
  • HDM extract diminished neutrophil migration towards recombinant ENA-78/CXCL5.

Conclusions:

  • HDM proteases are responsible for the degradation of ENA-78/CXCL5.
  • HDM allergen exposure may alter ENA-78/CXCL5 levels in the lungs.
  • These alterations could influence angiogenesis and airway inflammation in asthma.