Literature DB >> 25704617

Leukotriene C4 induces bronchoconstriction and airway vascular hyperpermeability via the cysteinyl leukotriene receptor 2 in S-hexyl glutathione-treated guinea pigs.

Yasuo Yonetomi1, Tomohiko Sekioka2, Michiaki Kadode2, Tetsuya Kitamine2, Akihiro Kamiya2, Naoya Matsumura2, Manabu Fujita2, Kazuhito Kawabata2.   

Abstract

Cysteinyl leukotrienes act through G-protein-coupled receptors termed cysteinyl leukotriene 1 (CysLT1) and cysteinyl leukotriene 2 (CysLT2) receptors. However, little is known about the pathophysiological role of CysLT2 receptors in asthma. To elucidate the possible involvement of CysLT2 receptors in bronchoconstriction and airway vascular hyperpermeability, we have established a novel guinea pig model of asthma. In vitro study confirmed that CHO-K1 cells, expressing guinea pig CysLT2 and CysLT1 receptors are selectively stimulated by LTC4 and LTD4, respectively. However, when LTC4 was intravenously injected to guinea pigs, the resulting bronchoconstriction was fully abrogated by montelukast, a CysLT1 receptor antagonist, indicating rapid metabolism of LTC4 to LTD4 in the lung. We found that treatment with S-hexyl glutathione (S-hexyl GSH), an inhibitor of gamma-glutamyl transpeptidase, significantly increased LTC4 content and LTC4/(LTD4 plus LTE4) ratio in the lung. Under these circumstances, LTC4-induced bronchoconstriction became resistant to montelukast, but sensitive to Compound A, a CysLT2 receptor antagonist, depending on the dose of S-hexyl GSH. Combination with montelukast and Compound A completely abrogated this spasmogenic response. Additionally, we confirmed that LTC4 elicits airway vascular hyperpermeability via CysLT2 receptors in the presence of high dose of S-hexyl GSH as evidenced by complete inhibition of LTC4-induced hyperpermeability by Compound A, but not montelukast. These results suggest that CysLT2 receptors mediate bronchoconstriction and airway vascular hyperpermeability in guinea pigs and that the animal model used in this study may be useful to elucidate the functional role of CysLT2 receptors in various diseases, including asthma.
Copyright © 2015 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Asthma; CysLT(2) receptor; CysLTs; Glutathione; Glutathione (Pubchem CID: 124886); LTC(4) metabolism

Mesh:

Substances:

Year:  2015        PMID: 25704617     DOI: 10.1016/j.ejphar.2015.02.014

Source DB:  PubMed          Journal:  Eur J Pharmacol        ISSN: 0014-2999            Impact factor:   4.432


  5 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2016-05-16       Impact factor: 11.205

5.  Structural basis of ligand selectivity and disease mutations in cysteinyl leukotriene receptors.

Authors:  Anastasiia Gusach; Aleksandra Luginina; Egor Marin; Rebecca L Brouillette; Élie Besserer-Offroy; Jean-Michel Longpré; Andrii Ishchenko; Petr Popov; Nilkanth Patel; Taku Fujimoto; Toru Maruyama; Benjamin Stauch; Margarita Ergasheva; Daria Romanovskaia; Anastasiia Stepko; Kirill Kovalev; Mikhail Shevtsov; Valentin Gordeliy; Gye Won Han; Vsevolod Katritch; Valentin Borshchevskiy; Philippe Sarret; Alexey Mishin; Vadim Cherezov
Journal:  Nat Commun       Date:  2019-12-06       Impact factor: 14.919

  5 in total

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