Cargando…

A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice

BACKGROUND: Stored glycogen is an important source of energy for skeletal muscle. Human genetic disorders primarily affecting skeletal muscle glycogen turnover are well-recognised, but rare. We previously reported that a frameshift/premature stop mutation in PPP1R3A, the gene encoding R(GL), a key r...

Descripción completa

Detalles Bibliográficos
Autores principales: Savage, David B, Zhai, Lanmin, Ravikumar, Balasubramanian, Choi, Cheol Soo, Snaar, Johanna E, McGuire, Amanda C, Wou, Sung-Eun, Medina-Gomez, Gemma, Kim, Sheene, Bock, Cheryl B, Segvich, Dyann M, Vidal-Puig, Antonio, Wareham, Nicholas J, Shulman, Gerald I, Karpe, Fredrik, Taylor, Roy, Pederson, Bartholomew A, Roach, Peter J, O'Rahilly, Stephen, DePaoli-Roach, Anna A
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2214798/
https://www.ncbi.nlm.nih.gov/pubmed/18232732
http://dx.doi.org/10.1371/journal.pmed.0050027
_version_ 1782148957548314624
author Savage, David B
Zhai, Lanmin
Ravikumar, Balasubramanian
Choi, Cheol Soo
Snaar, Johanna E
McGuire, Amanda C
Wou, Sung-Eun
Medina-Gomez, Gemma
Kim, Sheene
Bock, Cheryl B
Segvich, Dyann M
Vidal-Puig, Antonio
Wareham, Nicholas J
Shulman, Gerald I
Karpe, Fredrik
Taylor, Roy
Pederson, Bartholomew A
Roach, Peter J
O'Rahilly, Stephen
DePaoli-Roach, Anna A
author_facet Savage, David B
Zhai, Lanmin
Ravikumar, Balasubramanian
Choi, Cheol Soo
Snaar, Johanna E
McGuire, Amanda C
Wou, Sung-Eun
Medina-Gomez, Gemma
Kim, Sheene
Bock, Cheryl B
Segvich, Dyann M
Vidal-Puig, Antonio
Wareham, Nicholas J
Shulman, Gerald I
Karpe, Fredrik
Taylor, Roy
Pederson, Bartholomew A
Roach, Peter J
O'Rahilly, Stephen
DePaoli-Roach, Anna A
author_sort Savage, David B
collection PubMed
description BACKGROUND: Stored glycogen is an important source of energy for skeletal muscle. Human genetic disorders primarily affecting skeletal muscle glycogen turnover are well-recognised, but rare. We previously reported that a frameshift/premature stop mutation in PPP1R3A, the gene encoding R(GL), a key regulator of muscle glycogen metabolism, was present in 1.36% of participants from a population of white individuals in the UK. However, the functional implications of the mutation were not known. The objective of this study was to characterise the molecular and physiological consequences of this genetic variant. METHODS AND FINDINGS: In this study we found a similar prevalence of the variant in an independent UK white population of 744 participants (1.46%) and, using in vivo (13)C magnetic resonance spectroscopy studies, demonstrate that human carriers (n = 6) of the variant have low basal (65% lower, p = 0.002) and postprandial muscle glycogen levels. Mice engineered to express the equivalent mutation had similarly decreased muscle glycogen levels (40% lower in heterozygous knock-in mice, p < 0.05). In muscle tissue from these mice, failure of the truncated mutant to bind glycogen and colocalize with glycogen synthase (GS) decreased GS and increased glycogen phosphorylase activity states, which account for the decreased glycogen content. CONCLUSIONS: Thus, PPP1R3A C1984ΔAG (stop codon 668) is, to our knowledge, the first prevalent mutation described that directly impairs glycogen synthesis and decreases glycogen levels in human skeletal muscle. The fact that it is present in ∼1 in 70 UK whites increases the potential biomedical relevance of these observations.
format Text
id pubmed-2214798
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-22147982008-01-26 A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice Savage, David B Zhai, Lanmin Ravikumar, Balasubramanian Choi, Cheol Soo Snaar, Johanna E McGuire, Amanda C Wou, Sung-Eun Medina-Gomez, Gemma Kim, Sheene Bock, Cheryl B Segvich, Dyann M Vidal-Puig, Antonio Wareham, Nicholas J Shulman, Gerald I Karpe, Fredrik Taylor, Roy Pederson, Bartholomew A Roach, Peter J O'Rahilly, Stephen DePaoli-Roach, Anna A PLoS Med Research Article BACKGROUND: Stored glycogen is an important source of energy for skeletal muscle. Human genetic disorders primarily affecting skeletal muscle glycogen turnover are well-recognised, but rare. We previously reported that a frameshift/premature stop mutation in PPP1R3A, the gene encoding R(GL), a key regulator of muscle glycogen metabolism, was present in 1.36% of participants from a population of white individuals in the UK. However, the functional implications of the mutation were not known. The objective of this study was to characterise the molecular and physiological consequences of this genetic variant. METHODS AND FINDINGS: In this study we found a similar prevalence of the variant in an independent UK white population of 744 participants (1.46%) and, using in vivo (13)C magnetic resonance spectroscopy studies, demonstrate that human carriers (n = 6) of the variant have low basal (65% lower, p = 0.002) and postprandial muscle glycogen levels. Mice engineered to express the equivalent mutation had similarly decreased muscle glycogen levels (40% lower in heterozygous knock-in mice, p < 0.05). In muscle tissue from these mice, failure of the truncated mutant to bind glycogen and colocalize with glycogen synthase (GS) decreased GS and increased glycogen phosphorylase activity states, which account for the decreased glycogen content. CONCLUSIONS: Thus, PPP1R3A C1984ΔAG (stop codon 668) is, to our knowledge, the first prevalent mutation described that directly impairs glycogen synthesis and decreases glycogen levels in human skeletal muscle. The fact that it is present in ∼1 in 70 UK whites increases the potential biomedical relevance of these observations. Public Library of Science 2008-01 2008-01-29 /pmc/articles/PMC2214798/ /pubmed/18232732 http://dx.doi.org/10.1371/journal.pmed.0050027 Text en : © 2008 Savage et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Savage, David B
Zhai, Lanmin
Ravikumar, Balasubramanian
Choi, Cheol Soo
Snaar, Johanna E
McGuire, Amanda C
Wou, Sung-Eun
Medina-Gomez, Gemma
Kim, Sheene
Bock, Cheryl B
Segvich, Dyann M
Vidal-Puig, Antonio
Wareham, Nicholas J
Shulman, Gerald I
Karpe, Fredrik
Taylor, Roy
Pederson, Bartholomew A
Roach, Peter J
O'Rahilly, Stephen
DePaoli-Roach, Anna A
A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice
title A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice
title_full A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice
title_fullStr A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice
title_full_unstemmed A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice
title_short A Prevalent Variant in PPP1R3A Impairs Glycogen Synthesis and Reduces Muscle Glycogen Content in Humans and Mice
title_sort prevalent variant in ppp1r3a impairs glycogen synthesis and reduces muscle glycogen content in humans and mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2214798/
https://www.ncbi.nlm.nih.gov/pubmed/18232732
http://dx.doi.org/10.1371/journal.pmed.0050027
work_keys_str_mv AT savagedavidb aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT zhailanmin aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT ravikumarbalasubramanian aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT choicheolsoo aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT snaarjohannae aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT mcguireamandac aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT wousungeun aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT medinagomezgemma aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT kimsheene aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT bockcherylb aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT segvichdyannm aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT vidalpuigantonio aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT warehamnicholasj aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT shulmangeraldi aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT karpefredrik aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT taylorroy aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT pedersonbartholomewa aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT roachpeterj aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT orahillystephen aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT depaoliroachannaa aprevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT savagedavidb prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT zhailanmin prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT ravikumarbalasubramanian prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT choicheolsoo prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT snaarjohannae prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT mcguireamandac prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT wousungeun prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT medinagomezgemma prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT kimsheene prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT bockcherylb prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT segvichdyannm prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT vidalpuigantonio prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT warehamnicholasj prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT shulmangeraldi prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT karpefredrik prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT taylorroy prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT pedersonbartholomewa prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT roachpeterj prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT orahillystephen prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice
AT depaoliroachannaa prevalentvariantinppp1r3aimpairsglycogensynthesisandreducesmuscleglycogencontentinhumansandmice