Name:
127801.1-20200117122542-covere ...
Size:
7.054Mb
Format:
PDF
Description:
Final Published Version
Author
Asosingh, KewalLauruschkat, Chris D
Alemagno, Mario
Frimel, Matthew
Wanner, Nicholas
Weiss, Kelly
Kessler, Sean
Meyers, Deborah A
Bennett, Carole
Xu, Weiling
Erzurum, Serpil
Affiliation
Univ Arizona, Coll Med, Dept Med, Div Genet Genom & Precis MedIssue Date
2020-01-30
Metadata
Show full item recordPublisher
AMER SOC CLINICAL INVESTIGATION INCCitation
Asosingh, K., Lauruschkat, C. D., Alemagno, M., Frimel, M., Wanner, N., Weiss, K., … Erzurum, S. (2020). Arginine metabolic control of airway inflammation. JCI Insight, 5(2). https://doi.org/10.1172/jci.insight.127801Journal
JCI INSIGHTRights
Copyright © 2020, American Society for Clinical Investigation.Collection Information
This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.Abstract
Inducible nitric oxide synthase (iNOS) and arginase-2 (ARG2) share a common substrate, arginine. Higher expression of iNOS and exhaled NO are linked to airway inflammation in patients. iNOS deletion in animal models suggests that eosinophilic inflammation is regulated by arginine metabolism. Moreover, ARG2 is a regulator of Th2 response, as shown by the development of severe eosinophilic inflammation in ARG2(-/-) mice. However, potential synergistic roles of iNOS and ARG2 in asthma have not been explored. Here, we hypothesized that arginine metabolic fate via iNOS and ARG2 may govern airway inflammation. In an asthma cohort, ARG2 variant genotypes were associated with arginase activity. ARG2 variants with lower arginase activity, combined with levels of exhaled NO, identified a severe asthma phenotype. Airway inflammation was present in WT, ARG2(-/-), iNDS(-/-), and ARG2(-/-)/iNOS(-/-) mice but was greatest in ARG2(-/-). Eosinophilic and neutrophilic infiltration in the ARG2(-/-) mice was abrogated in ARG2(-/-)/iNOS(-/-) animals. Similarly, angiogenic airway remodeling was greatest in ARG2(-/- )mice. Cytokines driving inflammation and remodeling were highest in lungs of asthmatic ARG2(-/-) mice and lowest in the iNOS(-/-). ARG2 metabolism of arginine suppresses inflammation, while iNOS metabolism promotes airway inflammation, supporting a central role for arginine metabolic control of inflammation.ISSN
2379-3708PubMed ID
31996482Version
Final published versionae974a485f413a2113503eed53cd6c53
10.1172/jci.insight.127801
Scopus Count
Collections
Related articles
- Arginine metabolic endotypes related to asthma severity.
- Authors: Xu W, Comhair SAA, Janocha AJ, Lara A, Mavrakis LA, Bennett CD, Kalhan SC, Erzurum SC
- Issue date: 2017
- Increased mitochondrial arginine metabolism supports bioenergetics in asthma.
- Authors: Xu W, Ghosh S, Comhair SA, Asosingh K, Janocha AJ, Mavrakis DA, Bennett CD, Gruca LL, Graham BB, Queisser KA, Kao CC, Wedes SH, Petrich JM, Tuder RM, Kalhan SC, Erzurum SC
- Issue date: 2016 Jul 1
- Arginase II restricts host defense to Helicobacter pylori by attenuating inducible nitric oxide synthase translation in macrophages.
- Authors: Lewis ND, Asim M, Barry DP, Singh K, de Sablet T, Boucher JL, Gobert AP, Chaturvedi R, Wilson KT
- Issue date: 2010 Mar 1
- Functionally important role for arginase 1 in the airway hyperresponsiveness of asthma.
- Authors: North ML, Khanna N, Marsden PA, Grasemann H, Scott JA
- Issue date: 2009 Jun
- [Arginine metabolism in bronchial asthma].
- Authors: Lewandowicz AM, Pawliczak R
- Issue date: 2007