Downregulation of the serum response factor/miR-1 axis in the quadriceps of patients with COPD

Thorax. 2012 Jan;67(1):26-34. doi: 10.1136/thoraxjnl-2011-200309. Epub 2011 Oct 13.

Abstract

Rationale: Muscle atrophy confers a poor prognosis in patients with chronic obstructive pulmonary disease (COPD), yet the molecular pathways responsible are poorly characterised. Muscle-specific microRNAs and serum response factor (SRF) are important regulators of muscle phenotype that contribute to a feedback system to regulate muscle gene expression. The role of these factors in the skeletal muscle dysfunction that accompanies COPD is unknown.

Methods: 31 patients with COPD and 14 healthy age-matched controls underwent lung and quadriceps function assessments, measurement of daily activity and a percutaneous quadriceps muscle biopsy. The expression of muscle-specific microRNAs, myosin heavy chains and components of the serum response factor signalling pathway were determined by qPCR.

Results: A reduction in expression of miR-1 (2.5-fold, p=0.01) and the myocardin-related transcription factors (MRTFs) A and B was observed in patients compared with controls (MRTF-A mRNA: twofold, p=0.028; MRTF-B mRNA: fourfold, p=0.011). miR-1 expression was associated with smoking history, lung function, fat-free mass index, 6 min walk distance and percentage of type 1 fibres. miR-133 and miR-206 were negatively correlated with daily physical activity. Insulin-like growth factor 1 mRNA was increased in the patients and miR-1 was negatively correlated with phosphorylation of the kinase Akt. Furthermore, the protein levels of histone deacetylase 4, another miR-1 target, were increased in the patients.

Conclusions: Downregulation of the activity of the MRTF-SRF axis and the expression of muscle-specific microRNAs, particularly miR-1, may contribute to COPD-associated skeletal muscle dysfunction.

Publication types

  • Comparative Study
  • Research Support, Non-U.S. Gov't

MeSH terms

  • Aged
  • Biopsy
  • Disease Progression
  • Down-Regulation*
  • Female
  • Fluorescent Antibody Technique
  • Follow-Up Studies
  • Genetic Predisposition to Disease
  • Humans
  • Male
  • MicroRNAs / biosynthesis
  • MicroRNAs / genetics*
  • Muscular Diseases / etiology*
  • Muscular Diseases / genetics
  • Muscular Diseases / metabolism
  • Pulmonary Disease, Chronic Obstructive / complications
  • Pulmonary Disease, Chronic Obstructive / genetics*
  • Pulmonary Disease, Chronic Obstructive / metabolism
  • Quadriceps Muscle / metabolism*
  • Reverse Transcriptase Polymerase Chain Reaction
  • Serum Response Factor / biosynthesis
  • Serum Response Factor / genetics*
  • Signal Transduction

Substances

  • MIRN1 microRNA, human
  • MicroRNAs
  • Serum Response Factor