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Mitochondrial iron chelation ameliorates cigarette smoke-induced bronchitis and emphysema in mice.

Authors :
Cloonan SM
Glass K
Laucho-Contreras ME
Bhashyam AR
Cervo M
Pabón MA
Konrad C
Polverino F
Siempos II
Perez E
Mizumura K
Ghosh MC
Parameswaran H
Williams NC
Rooney KT
Chen ZH
Goldklang MP
Yuan GC
Moore SC
Demeo DL
Rouault TA
D'Armiento JM
Schon EA
Manfredi G
Quackenbush J
Mahmood A
Silverman EK
Owen CA
Choi AM
Source :
Nature medicine [Nat Med] 2016 Feb; Vol. 22 (2), pp. 163-74. Date of Electronic Publication: 2016 Jan 11.
Publication Year :
2016

Abstract

Chronic obstructive pulmonary disease (COPD) is linked to both cigarette smoking and genetic determinants. We have previously identified iron-responsive element-binding protein 2 (IRP2) as an important COPD susceptibility gene and have shown that IRP2 protein is increased in the lungs of individuals with COPD. Here we demonstrate that mice deficient in Irp2 were protected from cigarette smoke (CS)-induced experimental COPD. By integrating RNA immunoprecipitation followed by sequencing (RIP-seq), RNA sequencing (RNA-seq), and gene expression and functional enrichment clustering analysis, we identified Irp2 as a regulator of mitochondrial function in the lungs of mice. Irp2 increased mitochondrial iron loading and levels of cytochrome c oxidase (COX), which led to mitochondrial dysfunction and subsequent experimental COPD. Frataxin-deficient mice, which had higher mitochondrial iron loading, showed impaired airway mucociliary clearance (MCC) and higher pulmonary inflammation at baseline, whereas mice deficient in the synthesis of cytochrome c oxidase, which have reduced COX, were protected from CS-induced pulmonary inflammation and impairment of MCC. Mice treated with a mitochondrial iron chelator or mice fed a low-iron diet were protected from CS-induced COPD. Mitochondrial iron chelation also alleviated CS-induced impairment of MCC, CS-induced pulmonary inflammation and CS-associated lung injury in mice with established COPD, suggesting a critical functional role and potential therapeutic intervention for the mitochondrial-iron axis in COPD.

Details

Language :
English
ISSN :
1546-170X
Volume :
22
Issue :
2
Database :
MEDLINE
Journal :
Nature medicine
Publication Type :
Academic Journal
Accession number :
26752519
Full Text :
https://doi.org/10.1038/nm.4021