Cargando…

PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals

PGC1α, a transcriptional coactivator, interacts with PPARs and others to regulate skeletal muscle metabolism. PGC1α undergoes splicing to produce several mRNA variants, with the NTPGC1α variant having a similar biological function to the full length PGC1α (FLPGC1α). CVD is associated with obesity an...

Descripción completa

Detalles Bibliográficos
Autores principales: Henagan, Tara M., Stewart, Laura K., Forney, Laura A., Sparks, Lauren M., Johannsen, Neil, Church, Timothy S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4295622/
https://www.ncbi.nlm.nih.gov/pubmed/25614734
http://dx.doi.org/10.1155/2014/895734
_version_ 1782352877846528000
author Henagan, Tara M.
Stewart, Laura K.
Forney, Laura A.
Sparks, Lauren M.
Johannsen, Neil
Church, Timothy S.
author_facet Henagan, Tara M.
Stewart, Laura K.
Forney, Laura A.
Sparks, Lauren M.
Johannsen, Neil
Church, Timothy S.
author_sort Henagan, Tara M.
collection PubMed
description PGC1α, a transcriptional coactivator, interacts with PPARs and others to regulate skeletal muscle metabolism. PGC1α undergoes splicing to produce several mRNA variants, with the NTPGC1α variant having a similar biological function to the full length PGC1α (FLPGC1α). CVD is associated with obesity and T2D and a lower percentage of type 1 oxidative fibers and impaired mitochondrial function in skeletal muscle, characteristics determined by PGC1α expression. PGC1α expression is epigenetically regulated in skeletal muscle to determine mitochondrial adaptations, and epigenetic modifications may regulate mRNA splicing. We report in this paper that skeletal muscle PGC1α  −1 nucleosome (−1N) position is associated with splice variant NTPGC1α but not FLPGC1α expression. Division of participants based on the −1N position revealed that those individuals with a −1N phased further upstream from the transcriptional start site (UP) expressed lower levels of NTPGC1α than those with the −1N more proximal to TSS (DN). UP showed an increase in body fat percentage and serum total and LDL cholesterol. These findings suggest that the −1N may be a potential epigenetic regulator of NTPGC1α splice variant expression, and −1N position and NTPGC1α variant expression in skeletal muscle are linked to CVD risk. This trial is registered with clinicaltrials.gov, identifier NCT00458133.
format Online
Article
Text
id pubmed-4295622
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-42956222015-01-22 PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals Henagan, Tara M. Stewart, Laura K. Forney, Laura A. Sparks, Lauren M. Johannsen, Neil Church, Timothy S. PPAR Res Research Article PGC1α, a transcriptional coactivator, interacts with PPARs and others to regulate skeletal muscle metabolism. PGC1α undergoes splicing to produce several mRNA variants, with the NTPGC1α variant having a similar biological function to the full length PGC1α (FLPGC1α). CVD is associated with obesity and T2D and a lower percentage of type 1 oxidative fibers and impaired mitochondrial function in skeletal muscle, characteristics determined by PGC1α expression. PGC1α expression is epigenetically regulated in skeletal muscle to determine mitochondrial adaptations, and epigenetic modifications may regulate mRNA splicing. We report in this paper that skeletal muscle PGC1α  −1 nucleosome (−1N) position is associated with splice variant NTPGC1α but not FLPGC1α expression. Division of participants based on the −1N position revealed that those individuals with a −1N phased further upstream from the transcriptional start site (UP) expressed lower levels of NTPGC1α than those with the −1N more proximal to TSS (DN). UP showed an increase in body fat percentage and serum total and LDL cholesterol. These findings suggest that the −1N may be a potential epigenetic regulator of NTPGC1α splice variant expression, and −1N position and NTPGC1α variant expression in skeletal muscle are linked to CVD risk. This trial is registered with clinicaltrials.gov, identifier NCT00458133. Hindawi Publishing Corporation 2014 2014-12-28 /pmc/articles/PMC4295622/ /pubmed/25614734 http://dx.doi.org/10.1155/2014/895734 Text en Copyright © 2014 Tara M. Henagan et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Henagan, Tara M.
Stewart, Laura K.
Forney, Laura A.
Sparks, Lauren M.
Johannsen, Neil
Church, Timothy S.
PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals
title PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals
title_full PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals
title_fullStr PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals
title_full_unstemmed PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals
title_short PGC1α −1 Nucleosome Position and Splice Variant Expression and Cardiovascular Disease Risk in Overweight and Obese Individuals
title_sort pgc1α −1 nucleosome position and splice variant expression and cardiovascular disease risk in overweight and obese individuals
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4295622/
https://www.ncbi.nlm.nih.gov/pubmed/25614734
http://dx.doi.org/10.1155/2014/895734
work_keys_str_mv AT henagantaram pgc1a1nucleosomepositionandsplicevariantexpressionandcardiovasculardiseaseriskinoverweightandobeseindividuals
AT stewartlaurak pgc1a1nucleosomepositionandsplicevariantexpressionandcardiovasculardiseaseriskinoverweightandobeseindividuals
AT forneylauraa pgc1a1nucleosomepositionandsplicevariantexpressionandcardiovasculardiseaseriskinoverweightandobeseindividuals
AT sparkslaurenm pgc1a1nucleosomepositionandsplicevariantexpressionandcardiovasculardiseaseriskinoverweightandobeseindividuals
AT johannsenneil pgc1a1nucleosomepositionandsplicevariantexpressionandcardiovasculardiseaseriskinoverweightandobeseindividuals
AT churchtimothys pgc1a1nucleosomepositionandsplicevariantexpressionandcardiovasculardiseaseriskinoverweightandobeseindividuals