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Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy

BACKGROUND: People with chronic heart failure (CHF) experience severe skeletal muscle dysfunction, characterized by mitochondrial abnormalities, which exacerbates the primary symptom of exercise intolerance. However, the molecular triggers and characteristics underlying mitochondrial abnormalities c...

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Autores principales: Caspi, Talia, Straw, Sam, Cheng, Chew, Garnham, Jack O, Scragg, Jason L., Smith, Jessica, Koshy, Aaron O., Levelt, Eylem, Sukumar, Piruthivi, Gierula, John, Beech, David J., Kearney, Mark T., Cubbon, Richard M., Wheatcroft, Stephen B., Witte, Klaus K., Roberts, Lee D., Bowen, T. Scott
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7727001/
https://www.ncbi.nlm.nih.gov/pubmed/32892688
http://dx.doi.org/10.1161/JAHA.120.017091
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author Caspi, Talia
Straw, Sam
Cheng, Chew
Garnham, Jack O
Scragg, Jason L.
Smith, Jessica
Koshy, Aaron O.
Levelt, Eylem
Sukumar, Piruthivi
Gierula, John
Beech, David J.
Kearney, Mark T.
Cubbon, Richard M.
Wheatcroft, Stephen B.
Witte, Klaus K.
Roberts, Lee D.
Bowen, T. Scott
author_facet Caspi, Talia
Straw, Sam
Cheng, Chew
Garnham, Jack O
Scragg, Jason L.
Smith, Jessica
Koshy, Aaron O.
Levelt, Eylem
Sukumar, Piruthivi
Gierula, John
Beech, David J.
Kearney, Mark T.
Cubbon, Richard M.
Wheatcroft, Stephen B.
Witte, Klaus K.
Roberts, Lee D.
Bowen, T. Scott
author_sort Caspi, Talia
collection PubMed
description BACKGROUND: People with chronic heart failure (CHF) experience severe skeletal muscle dysfunction, characterized by mitochondrial abnormalities, which exacerbates the primary symptom of exercise intolerance. However, the molecular triggers and characteristics underlying mitochondrial abnormalities caused by CHF remain poorly understood. METHODS AND RESULTS: We recruited 28 patients with CHF caused by reduced ejection fraction and 9 controls. We simultaneously biopsied skeletal muscle from the pectoralis major in the upper limb and from the vastus lateralis in the lower limb. We phenotyped mitochondrial function in permeabilized myofibers from both sites and followed this by complete RNA sequencing to identify novel molecular abnormalities in CHF skeletal muscle. Patients with CHF presented with upper and lower limb skeletal muscle impairments to mitochondrial function that were of a similar deficit and indicative of a myopathy. Mitochondrial abnormalities were strongly correlated to symptoms. Further RNA sequencing revealed a unique transcriptome signature in CHF skeletal muscle characterized by a novel triad of differentially expressed genes related to deficits in energy metabolism including adenosine monophosphate deaminase 3, pyridine nucleotide‐disulphide oxidoreductase domain 2, and lactate dehydrogenase C. CONCLUSIONS: Our data suggest an upper and lower limb metabolic myopathy that is characterized by a unique transcriptome signature in skeletal muscle of humans with CHF.
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spelling pubmed-77270012020-12-13 Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy Caspi, Talia Straw, Sam Cheng, Chew Garnham, Jack O Scragg, Jason L. Smith, Jessica Koshy, Aaron O. Levelt, Eylem Sukumar, Piruthivi Gierula, John Beech, David J. Kearney, Mark T. Cubbon, Richard M. Wheatcroft, Stephen B. Witte, Klaus K. Roberts, Lee D. Bowen, T. Scott J Am Heart Assoc Brief Communication BACKGROUND: People with chronic heart failure (CHF) experience severe skeletal muscle dysfunction, characterized by mitochondrial abnormalities, which exacerbates the primary symptom of exercise intolerance. However, the molecular triggers and characteristics underlying mitochondrial abnormalities caused by CHF remain poorly understood. METHODS AND RESULTS: We recruited 28 patients with CHF caused by reduced ejection fraction and 9 controls. We simultaneously biopsied skeletal muscle from the pectoralis major in the upper limb and from the vastus lateralis in the lower limb. We phenotyped mitochondrial function in permeabilized myofibers from both sites and followed this by complete RNA sequencing to identify novel molecular abnormalities in CHF skeletal muscle. Patients with CHF presented with upper and lower limb skeletal muscle impairments to mitochondrial function that were of a similar deficit and indicative of a myopathy. Mitochondrial abnormalities were strongly correlated to symptoms. Further RNA sequencing revealed a unique transcriptome signature in CHF skeletal muscle characterized by a novel triad of differentially expressed genes related to deficits in energy metabolism including adenosine monophosphate deaminase 3, pyridine nucleotide‐disulphide oxidoreductase domain 2, and lactate dehydrogenase C. CONCLUSIONS: Our data suggest an upper and lower limb metabolic myopathy that is characterized by a unique transcriptome signature in skeletal muscle of humans with CHF. John Wiley and Sons Inc. 2020-09-05 /pmc/articles/PMC7727001/ /pubmed/32892688 http://dx.doi.org/10.1161/JAHA.120.017091 Text en © 2020 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Brief Communication
Caspi, Talia
Straw, Sam
Cheng, Chew
Garnham, Jack O
Scragg, Jason L.
Smith, Jessica
Koshy, Aaron O.
Levelt, Eylem
Sukumar, Piruthivi
Gierula, John
Beech, David J.
Kearney, Mark T.
Cubbon, Richard M.
Wheatcroft, Stephen B.
Witte, Klaus K.
Roberts, Lee D.
Bowen, T. Scott
Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy
title Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy
title_full Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy
title_fullStr Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy
title_full_unstemmed Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy
title_short Unique Transcriptome Signature Distinguishes Patients With Heart Failure With Myopathy
title_sort unique transcriptome signature distinguishes patients with heart failure with myopathy
topic Brief Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7727001/
https://www.ncbi.nlm.nih.gov/pubmed/32892688
http://dx.doi.org/10.1161/JAHA.120.017091
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