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PMID: 30562113 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Proteomic Analysis of the Myocardium in Hypertrophic Obstructive Cardiomyopathy.

Circulation. Genomic and precision medicine ·Vol. 11 ·No. 12 ·2018-00-00 ·Pages e001974

Coats CJ, Heywood WE, Virasami A, Ashrafi N, Syrris P, Dos Remedios C, Treibel TA, Moon JC, Lopes LR, McGregor CGA, Ashworth M, Sebire NJ, McKenna WJ, Mills K, Elliott PM

Abstract

Hypertrophic cardiomyopathy (HCM) is characterized by a complex phenotype that is only partly explained by the biological effects of individual genetic variants. The aim of this study was to use proteomic analysis of myocardial tissue to explore the postgenomic phenotype. Label-free proteomic analysis was used initially to compare protein profiles in myocardial samples from 11 patients with HCM undergoing surgical myectomy with control samples from 6 healthy unused donor hearts. Differentially expressed proteins of interest were validated in myocardial samples from 65 unrelated individuals (HCM [n=51], controls [n=7], and aortic stenosis [n=7]) by the development and use of targeted multiple reaction monitoring-based triple quadrupole mass spectrometry. In this exploratory study, 1586 proteins were identified with 151 proteins differentially expressed in HCM samples compared with controls ( P<0.05). Protein expression profiling showed that many proteins identified in the initial discovery study were associated with metabolism, muscle contraction, calcium regulation, and oxidative stress. Proteins downregulated in HCM versus controls included creatine kinase M-type, fructose-bisphosphate aldolase A, and phosphoglycerate mutase ( P<0.001). Proteins upregulated in HCM included lumican, carbonic anhydrase 3, desmin, α-actin skeletal, and FHL1 (four and a half LIM domain protein 1; P<0.01). Myocardial lumican concentration correlated with the left atrial area (ρ=0.34, P=0.015), late gadolinium enhancement on cardiac magnetic resonance imaging ( P=0.03) and the presence of a pathogenic sarcomere mutation ( P=0.04). The myocardial proteome of HCM provides supporting evidence for dysregulation of metabolic and structural proteins. The finding that lumican is raised in HCM hearts provides insight into the myocardial fibrosis that characterizes this disease.

Keywords
cardiomyopathies fibrosis hypertrophy proteome
MeSH Terms
Adult Aged Cardiomyopathy, Hypertrophic/diagnostic imaging,genetics,metabolism Female Humans Magnetic Resonance Imaging Male Middle Aged Mutation Myocardium/chemistry,metabolism Phenotype Proteins/chemistry,genetics,metabolism Proteomics
Chemicals
Proteins
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Coats Caroline J
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.). | University College London Great Ormond Street Institute of Child Health, London, United Kingdom (C.J.C., W.E.H., N.A., K.M.).
Heywood Wendy E
University College London Great Ormond Street Institute of Child Health, London, United Kingdom (C.J.C., W.E.H., N.A., K.M.).
Virasami Alex
Histopathology Unit, Great Ormond Street Hospital for Children, London, United Kingdom (A.V., M.A., N.J.S.).
Ashrafi Nadia
University College London Great Ormond Street Institute of Child Health, London, United Kingdom (C.J.C., W.E.H., N.A., K.M.).
Syrris Petros
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.).
Dos Remedios Cris
Department of Anatomy and Histology, Bosch Institute, The University of Sydney, New South Wales, Australia (C.d.R.).
Treibel Thomas A
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.). | Barts Heart Centre, Barts Health NHS Trust, London, United Kingdom (T.A.T., J.C.M., L.R.L., P.M.E.).
Moon James C
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.). | Barts Heart Centre, Barts Health NHS Trust, London, United Kingdom (T.A.T., J.C.M., L.R.L., P.M.E.).
Lopes Luis R
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.). | Barts Heart Centre, Barts Health NHS Trust, London, United Kingdom (T.A.T., J.C.M., L.R.L., P.M.E.).
McGregor Christopher G A
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.).
Ashworth Michael
Histopathology Unit, Great Ormond Street Hospital for Children, London, United Kingdom (A.V., M.A., N.J.S.).
Sebire Neil J
Histopathology Unit, Great Ormond Street Hospital for Children, London, United Kingdom (A.V., M.A., N.J.S.).
McKenna William J
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.).
Mills Kevin
University College London Great Ormond Street Institute of Child Health, London, United Kingdom (C.J.C., W.E.H., N.A., K.M.).
Elliott Perry M
University College London Institute of Cardiovascular Science, London, United Kingdom (C.J.C., P.S., T.A.T., J.C.M., L.R.L., C.G.A.M., W.J.M., P.M.E.). | Barts Heart Centre, Barts Health NHS Trust, London, United Kingdom (T.A.T., J.C.M., L.R.L., P.M.E.).
Article Info
Journal
Circulation. Genomic and precision medicine
Abbr.
Circ Genom Precis Med
ISSN
2574-8300
Published
2018-00-00
Pages
e001974
Language
English
Region
United States
NLM ID
101714113
Subset
IM
Grants
British Heart Foundation · FS/10/027/28248 · United Kingdom
Department of Health · United Kingdom
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