Literature DB >> 27088802

Epithelium-generated neuropeptide Y induces smooth muscle contraction to promote airway hyperresponsiveness.

Shanru Li, Cynthia Koziol-White, Joseph Jude, Meiqi Jiang, Hengjiang Zhao, Gaoyuan Cao, Edwin Yoo, William Jester, Michael P Morley, Su Zhou, Yi Wang, Min Min Lu, Reynold A Panettieri, Edward E Morrisey.   

Abstract

Asthma is one of the most common chronic diseases globally and can be divided into presenting with or without an immune response. Current therapies have little effect on nonimmune disease, and the mechanisms that drive this type of asthma are poorly understood. Here, we have shown that loss of the transcription factors forkhead box P1 (Foxp1) and Foxp4, which are critical for lung epithelial development, in the adult airway epithelium evokes a non-Th2 asthma phenotype that is characterized by airway hyperresponsiveness (AHR) without eosinophilic inflammation. Transcriptome analysis revealed that loss of Foxp1 and Foxp4 expression induces ectopic expression of neuropeptide Y (Npy), which has been reported to be present in the airways of asthma patients, but whose importance in disease pathogenesis remains unclear. Treatment of human lung airway explants with recombinant NPY increased airway contractility. Conversely, loss of Npy in Foxp1- and Foxp4-mutant airway epithelium rescued the AHR phenotype. We determined that NPY promotes AHR through the induction of Rho kinase activity and phosphorylation of myosin light chain, which induces airway smooth muscle contraction. Together, these studies highlight the importance of paracrine signals from the airway epithelium to the underlying smooth muscle to induce AHR and suggest that therapies targeting epithelial induction of this phenotype may prove useful in treatment of noneosinophilic asthma.

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Year:  2016        PMID: 27088802      PMCID: PMC4855915          DOI: 10.1172/JCI81389

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  29 in total

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Authors:  R O Crapo; R Casaburi; A L Coates; P L Enright; J L Hankinson; C G Irvin; N R MacIntyre; R T McKay; J S Wanger; S D Anderson; D W Cockcroft; J E Fish; P J Sterk
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2.  B lymphocytes regulate airway granulocytic inflammation and cytokine production in a murine model of fungal allergic asthma.

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Review 3.  The intriguing mission of neuropeptide Y in the immune system.

Authors:  Mirjana Dimitrijević; Stanislava Stanojević
Journal:  Amino Acids       Date:  2011-12-06       Impact factor: 3.520

4.  Elevated plasma concentration of neuropeptide Y and low level of circulating adrenaline in elderly asthmatics during rest and acute severe asthma.

Authors:  C Dahlöf; P Dahlof; J M Lundberg; U Strömbom
Journal:  Pulm Pharmacol       Date:  1988

Review 5.  The function of myosin and myosin light chain kinase phosphorylation in smooth muscle.

Authors:  K E Kamm; J T Stull
Journal:  Annu Rev Pharmacol Toxicol       Date:  1985       Impact factor: 13.820

6.  Neuropeptide Y--a novel brain peptide with structural similarities to peptide YY and pancreatic polypeptide.

Authors:  K Tatemoto; M Carlquist; V Mutt
Journal:  Nature       Date:  1982-04-15       Impact factor: 49.962

7.  Y1 signalling has a critical role in allergic airway inflammation.

Authors:  Laurence Macia; Priya T Rao; Julie Wheway; Frederic Sierro; Fabienne Mackay; Herbert Herzog
Journal:  Immunol Cell Biol       Date:  2011-03-08       Impact factor: 5.126

8.  Rat neuropeptide Y precursor gene expression. mRNA structure, tissue distribution, and regulation by glucocorticoids, cyclic AMP, and phorbol ester.

Authors:  H Higuchi; H Y Yang; S L Sabol
Journal:  J Biol Chem       Date:  1988-05-05       Impact factor: 5.157

9.  Sensitivity to leptin and susceptibility to seizures of mice lacking neuropeptide Y.

Authors:  J C Erickson; K E Clegg; R D Palmiter
Journal:  Nature       Date:  1996-05-30       Impact factor: 49.962

10.  Neuropeptides control the dynamic behavior of airway mucosal dendritic cells.

Authors:  Sabrina Voedisch; Sabine Rochlitzer; Tibor Z Veres; Emma Spies; Armin Braun
Journal:  PLoS One       Date:  2012-09-26       Impact factor: 3.240

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  7 in total

1.  Neuropeptide regulation of secretion and inflammation in human airway gland serous cells.

Authors:  Derek B McMahon; Ryan M Carey; Michael A Kohanski; Charles C L Tong; Peter Papagiannopoulos; Nithin D Adappa; James N Palmer; Robert J Lee
Journal:  Eur Respir J       Date:  2020-04-16       Impact factor: 16.671

2.  FOXP1 controls mesenchymal stem cell commitment and senescence during skeletal aging.

Authors:  Hanjun Li; Pei Liu; Shuqin Xu; Yinghua Li; Joseph D Dekker; Baojie Li; Ying Fan; Zhenlin Zhang; Yang Hong; Gong Yang; Tingting Tang; Yongxin Ren; Haley O Tucker; Zhengju Yao; Xizhi Guo
Journal:  J Clin Invest       Date:  2017-02-27       Impact factor: 14.808

3.  PAR-2-activated secretion by airway gland serous cells: role for CFTR and inhibition by Pseudomonas aeruginosa.

Authors:  Derek B McMahon; Ryan M Carey; Michael A Kohanski; Nithin D Adappa; James N Palmer; Robert J Lee
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Review 4.  Neuroimmune Pathophysiology in Asthma.

Authors:  Gandhi F Pavón-Romero; Nancy Haydée Serrano-Pérez; Lizbeth García-Sánchez; Fernando Ramírez-Jiménez; Luis M Terán
Journal:  Front Cell Dev Biol       Date:  2021-05-13

5.  Pulmonary neuroendocrine cells amplify allergic asthma responses.

Authors:  Pengfei Sui; Darin L Wiesner; Jinhao Xu; Yan Zhang; Jinwoo Lee; Steven Van Dyken; Amber Lashua; Chuyue Yu; Bruce S Klein; Richard M Locksley; Gail Deutsch; Xin Sun
Journal:  Science       Date:  2018-03-29       Impact factor: 63.714

Review 6.  Neuropeptides in asthma, chronic obstructive pulmonary disease and cystic fibrosis.

Authors:  Kalina R Atanasova; Leah R Reznikov
Journal:  Respir Res       Date:  2018-08-06

Review 7.  Regulatory Peptides in Asthma.

Authors:  Katarzyna Kaczyńska; Dominika Zając; Piotr Wojciechowski; Monika Jampolska
Journal:  Int J Mol Sci       Date:  2021-12-20       Impact factor: 5.923

  7 in total

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