Literature DB >> 18276774

Interleukin 13 increases contractility of murine tracheal smooth muscle by a phosphoinositide 3-kinase p110delta-dependent mechanism.

Hanan S M Farghaly1, Ian S Blagbrough, David A Medina-Tato, Malcolm L Watson.   

Abstract

The Th2 cytokine interleukin (IL) 13 can elicit a number of responses consistent with a key role in the pathogenesis of asthma. We have used pharmacological and genetic approaches to demonstrate the role of signaling via the class I phosphoinositide 3-kinase p110delta isoform in IL-13-induced hyper-responsiveness of murine tracheal smooth muscle contractility in vitro. IL-13 treatment of tracheal tissue is associated with an early activation of phosphoinositide 3-kinase (PI3K), as assessed by phosphorylation of Akt. Tracheal smooth muscle contractility is enhanced by overnight incubation with IL-13, resulting in increased maximal contractions (E(max)) to carbachol (CCh) and KCl. Inhibition of PI3K by the non-isoform-selective inhibitors wortmannin or 2-(4-morpholinyl)-8-phenyl-4H-1-benzopyran-4-one (LY294002), or the selective inhibitor of the PI3K p110delta isoform 2-(6-aminopurin-9-ylmethyl)-5-methyl-3-O-tolyl-3H-quinazolin-4-one (IC87114), prevented IL-13-induced hyper-responsiveness. Consistent with a role for PI3K p110delta in IL-13-induced hyper-responsiveness, IL-13 was unable to induce hyper-responsiveness in tissues from mice expressing the catalytically inactive form of p110delta (p110delta(D910A)). These data indicate that IL-13 contributes to tracheal smooth muscle hyper-responsiveness via the PI3K p110delta isoform. In addition to previously reported effects on airway inflammation, inhibition of PI3K p110delta may be a useful target for the treatment of asthma by preventing IL-13-induced airway smooth muscle hyper-responsiveness.

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Year:  2008        PMID: 18276774     DOI: 10.1124/mol.108.045419

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  17 in total

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Review 3.  Phosphoinositide 3-Kinase in Asthma: Novel Roles and Therapeutic Approaches.

Authors:  Edwin J Yoo; Christie A Ojiaku; Krishna Sunder; Reynold A Panettieri
Journal:  Am J Respir Cell Mol Biol       Date:  2017-06       Impact factor: 6.914

4.  Focal adhesion kinase (FAK) and mechanical stimulation negatively regulate the transition of airway smooth muscle tissues to a synthetic phenotype.

Authors:  Yidi Wu; Youliang Huang; Susan J Gunst
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2016-09-09       Impact factor: 5.464

Review 5.  Role of phosphoinositide 3-kinase in the pathogenesis of acute pancreatitis.

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6.  IL-13 dampens human airway epithelial innate immunity through induction of IL-1 receptor-associated kinase M.

Authors:  Qun Wu; Di Jiang; Sean Smith; Jyoti Thaikoottathil; Richard J Martin; Russell P Bowler; Hong Wei Chu
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7.  The αvβ6 integrin modulates airway hyperresponsiveness in mice by regulating intraepithelial mast cells.

Authors:  Kotaro Sugimoto; Makoto Kudo; Aparna Sundaram; Xin Ren; Katherine Huang; Xin Bernstein; Yanli Wang; Wilfred W Raymond; David J Erle; Magnus Abrink; George H Caughey; Xiaozhu Huang; Dean Sheppard
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8.  TGF-β regulates Nox4, MnSOD and catalase expression, and IL-6 release in airway smooth muscle cells.

Authors:  Charalambos Michaeloudes; Maria B Sukkar; Nadia M Khorasani; Pankaj K Bhavsar; Kian Fan Chung
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2010-12-03       Impact factor: 5.464

9.  Anti-malarial drug artesunate attenuates experimental allergic asthma via inhibition of the phosphoinositide 3-kinase/Akt pathway.

Authors:  Chang Cheng; W Eugene Ho; Fera Y Goh; Shou Ping Guan; Li Ren Kong; Wen-Qi Lai; Bernard P Leung; W S Fred Wong
Journal:  PLoS One       Date:  2011-06-09       Impact factor: 3.240

10.  Aldose reductase inhibition prevents allergic airway remodeling through PI3K/AKT/GSK3β pathway in mice.

Authors:  Umesh C S Yadav; Amarjit S Naura; Leopoldo Aguilera-Aguirre; Istvan Boldogh; Hamid A Boulares; William J Calhoun; Kota V Ramana; Satish K Srivastava
Journal:  PLoS One       Date:  2013-02-27       Impact factor: 3.240

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