Quadriceps miR-542-3p and 5p are elevated in COPD and reduce function by inhibiting ribosomal and protein synthesis
File(s)QuadricepsmiR5423p.pdf (2.63 MB)
Published version
Author(s)
Type
Journal Article
Abstract
Reduced physical performance reduces quality of life in patients with COPD. Impaired physical performance is, in part, a consequence of reduced muscle mass and function, which is accompanied by mitochondrial dysfunction. We recently showed that miR-542-3p and miR-542-5p were elevated in a small cohort of COPD patients and more markedly in critical care patients. In mice these miRNAs promoted mitochondrial dysfunction suggesting that they would affect physical performance in patients with COPD but we did not explore the association of these miRNAs with disease severity or physical performance further. We therefore quantified miR-542-3p/5p and mitochondrial rRNA expression in RNA extracted from quadriceps muscle of patients with COPD and determined their association with physical performance. As miR-542-3p inhibits ribosomal protein synthesis its ability to inhibit protein synthesis was also determined in vitro.Both miR-542-3p and -5p expression were elevated in patients with COPD (5-fold p<0.001) and the degree of elevation associated with impaired lung function (TLCO% and FEV1%) and physical performance (6-minute walk distance %). In COPD patients, the ratio of 12S rRNA to 16S rRNA was suppressed suggesting mitochondrial ribosomal stress and mitochondrial dysfunction and miR-542-3p/5p expression was inversely associated with mitochondrial gene expression and positively associated with p53 activity. miR-542-3p suppressed RPS23 expression and maximal protein synthesis in vitro. Our data show that miR-542-3p and -5p expression is elevated in COPD patients and may suppress physical performance at least in part by inhibiting mitochondrial and cytoplasmic ribosome synthesis and suppressing protein synthesis.
Date Issued
2019-06-01
Date Acceptance
2019-01-21
Citation
Journal of Applied Physiology, 2019, 126 (6), pp.1514-1524
ISSN
8750-7587
Publisher
American Physiological Society
Start Page
1514
End Page
1524
Journal / Book Title
Journal of Applied Physiology
Volume
126
Issue
6
Copyright Statement
Licensed under Creative Commons Attribution CC-BY 4.0 : © the American Physiological Society.
Sponsor
Medical Research Council (MRC)
British Heart Foundation
Rosetrees Trust
Grant Number
97159 (MRC ref G1001362)
FS/14/71/31038
A960
Subjects
Science & Technology
Life Sciences & Biomedicine
Physiology
Sport Sciences
chronic obstructive pulmonary disease
microRNA
mitochondrial and cytoplasmic ribosomes
OBSTRUCTIVE PULMONARY-DISEASE
SKELETAL-MUSCLE
MITOCHONDRIAL DYSFUNCTION
MASS
SARCOPENIA
MORTALITY
EXPRESSION
PHENOTYPE
STRENGTH
MODERATE
chronic obstructive pulmonary disease
microRNA
mitochondrial and cytoplasmic ribosomes
06 Biological Sciences
11 Medical and Health Sciences
Physiology
Publication Status
Published
Date Publish Online
2019-05-31