Role of Cationic Proteins in the Airway
- 1 November 1994
- journal article
- review article
- Published by American Thoracic Society in American Journal of Respiratory and Critical Care Medicine
- Vol. 150 (5_pt_2) , S63-S71
- https://doi.org/10.1164/ajrccm/150.5_pt_2.s63
Abstract
Major basic protein (MBP) is a highly cationic protein found in the granules of eosinophils. It has been postulated that MBP may participate in the pathogenesis of airway hyperresponsiveness exhibited by asthmatic patients. Accordingly, we have employed a rat system to investigate the effect of human MBP instillation on airway responsiveness and the possible role of cationic charge in the determination of this effect. Major basic protein caused a significant increase in airway responsiveness to inhaled methacholine. Two polycations, poly-L-arginine and poly-L-lysine, also increased airway responsiveness to inhaled methacholine. Moreover, two other very different cationic proteins, platelet factor 4 (PF4) and cathepsin G were also capable of inducing airway hyperresponsiveness. These effects were dependent on their positive charge, since the charge--and, hence the effect--of these proteins was neutralized with low molecular weight heparin. In addition, other polyanions, such as low molecular weight heparin, albumin, or dextran sulfate, were also effective. We investigated whether two synthetic cationic proteins, poly-L-arginine and poly-L-lysine, could modify epithelial-dependent responses using a perfused guinea pig tracheal tube preparation. With an intact epithelium, methacholine was some 150 times less potent when applied intraluminally than when applied extraluminally. Perfusion of the luminal surface with cationic proteins increased the potency of intraluminally applied methacholine without modifying the responses to extraluminally applied methacholine. Cationic proteins also attenuated the relaxant effects of intraluminally applied KCl. These effects occurred in the absence of any overt epithelial cell damage. Our data demonstrates that cationic proteins can modify epithelial-dependent responses in the airways.(ABSTRACT TRUNCATED AT 250 WORDS)Keywords
This publication has 68 references indexed in Scilit:
- Cytotoxicity of human eosinophil granule major basic protein to human nasal sinus mucosa in vitroJournal of Allergy and Clinical Immunology, 1990
- The eosinophil and bronchial asthma: Current understandingJournal of Allergy and Clinical Immunology, 1990
- Morphological integrity of the bronchial epithelium in mild asthma.Thorax, 1990
- Modification of allergen-induced airway obstruction and airway hyperresponsiveness in an allergic rabbit model by the selective platelet-activating factor antagonist, BN 52021Journal of Allergy and Clinical Immunology, 1989
- Peripheral blood eosinophil counts and bronchial responsiveness.Thorax, 1987
- Defensins. Natural peptide antibiotics of human neutrophils.Journal of Clinical Investigation, 1985
- Bronchoalveolar lavage in asthma: The effect of disodium cromoglycate (cromolyn) on leukocyte counts, immunoglobulins, and complementJournal of Allergy and Clinical Immunology, 1984
- Selective generation of leukotriene B4 by tracheal epithelial cells from dogsBiochemical and Biophysical Research Communications, 1983
- IDENTIFICATION BY IMMUNOFLUORESCENCE OF EOSINOPHIL GRANULE MAJOR BASIC PROTEIN IN LUNG TISSUES OF PATIENTS WITH BRONCHIAL ASTHMAThe Lancet, 1982
- Physiologic actions of heparin not related to blood clottingThe American Journal of Cardiology, 1964