Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice

Aims/hypothesis Although myostatin-null (Mstn −/−) mice fail to accumulate fat in adipose tissue when fed a high-fat diet (HFD), little is known about the molecular mechanism(s) behind this phenomenon. We therefore sought to identify the signalling pathways through which myostatin regulates accumul...

Full description

Saved in:
Bibliographic Details
Main Authors: Gluckman, Peter D., Zhang, C., Masuda, S., Kambadur, R., McFarlane, Craig, Lokireddy, Sudarsanareddy, Ge, Xiaojia, Sharma, Mridula
Other Authors: School of Biological Sciences
Format: Article
Language:English
Published: 2013
Subjects:
Online Access:https://hdl.handle.net/10356/97641
http://hdl.handle.net/10220/13216
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-97641
record_format dspace
spelling sg-ntu-dr.10356-976412020-03-07T12:18:08Z Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice Gluckman, Peter D. Zhang, C. Masuda, S. Kambadur, R. McFarlane, Craig Lokireddy, Sudarsanareddy Ge, Xiaojia Sharma, Mridula School of Biological Sciences DRNTU::Science::Biological sciences Aims/hypothesis Although myostatin-null (Mstn −/−) mice fail to accumulate fat in adipose tissue when fed a high-fat diet (HFD), little is known about the molecular mechanism(s) behind this phenomenon. We therefore sought to identify the signalling pathways through which myostatin regulates accumulation and/or utilisation of fat. Methods Wild-type, Mstn −/− and wild-type mice treated with soluble activin type IIB receptor (sActRIIB) were fed a control chow diet or an HFD for 12 weeks. Changes in gene expression were measured by microarray and quantitative PCR. Histological changes in white adipose tissue were assessed together with peripheral tissue fatty acid oxidation and changes in circulating hormones following HFD feeding. Results Our results demonstrate that inactivation of myostatin results in reduced fat accumulation in mice on an HFD. Molecular analysis revealed that metabolic benefits, due to lack of myostatin, are mediated through at least two independent mechanisms. First, lack of myostatin increased fatty acid oxidation in peripheral tissues through induction of enzymes involved in lipolysis and in fatty acid oxidation in mitochondria. Second, inactivation of myostatin also enhanced brown adipose formation in white adipose tissue of Mstn −/− mice. Consistent with the above, treatment of HFD-fed wild-type mice with the myostatin antagonist, sActRIIB, reduced the obesity phenotype. Conclusions/interpretation We conclude that absence of myostatin results in enhanced peripheral tissue fatty acid oxidation and increased thermogenesis, culminating in increased fat utilisation and reduced adipose tissue mass. Taken together, our data suggest that anti-myostatin therapeutics could be beneficial in alleviating obesity. 2013-08-26T06:14:02Z 2019-12-06T19:44:51Z 2013-08-26T06:14:02Z 2019-12-06T19:44:51Z 2012 2012 Journal Article Zhang, C., McFarlane, C., Lokireddy, S., Masuda, S., Ge, X., Gluckman, P. D., Sharma, M., & Kambadur, R. (2012). Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice. Diabetologia, 55(1), 183-193. https://hdl.handle.net/10356/97641 http://hdl.handle.net/10220/13216 10.1007/s00125-011-2304-4 en Diabetologia
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic DRNTU::Science::Biological sciences
spellingShingle DRNTU::Science::Biological sciences
Gluckman, Peter D.
Zhang, C.
Masuda, S.
Kambadur, R.
McFarlane, Craig
Lokireddy, Sudarsanareddy
Ge, Xiaojia
Sharma, Mridula
Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
description Aims/hypothesis Although myostatin-null (Mstn −/−) mice fail to accumulate fat in adipose tissue when fed a high-fat diet (HFD), little is known about the molecular mechanism(s) behind this phenomenon. We therefore sought to identify the signalling pathways through which myostatin regulates accumulation and/or utilisation of fat. Methods Wild-type, Mstn −/− and wild-type mice treated with soluble activin type IIB receptor (sActRIIB) were fed a control chow diet or an HFD for 12 weeks. Changes in gene expression were measured by microarray and quantitative PCR. Histological changes in white adipose tissue were assessed together with peripheral tissue fatty acid oxidation and changes in circulating hormones following HFD feeding. Results Our results demonstrate that inactivation of myostatin results in reduced fat accumulation in mice on an HFD. Molecular analysis revealed that metabolic benefits, due to lack of myostatin, are mediated through at least two independent mechanisms. First, lack of myostatin increased fatty acid oxidation in peripheral tissues through induction of enzymes involved in lipolysis and in fatty acid oxidation in mitochondria. Second, inactivation of myostatin also enhanced brown adipose formation in white adipose tissue of Mstn −/− mice. Consistent with the above, treatment of HFD-fed wild-type mice with the myostatin antagonist, sActRIIB, reduced the obesity phenotype. Conclusions/interpretation We conclude that absence of myostatin results in enhanced peripheral tissue fatty acid oxidation and increased thermogenesis, culminating in increased fat utilisation and reduced adipose tissue mass. Taken together, our data suggest that anti-myostatin therapeutics could be beneficial in alleviating obesity.
author2 School of Biological Sciences
author_facet School of Biological Sciences
Gluckman, Peter D.
Zhang, C.
Masuda, S.
Kambadur, R.
McFarlane, Craig
Lokireddy, Sudarsanareddy
Ge, Xiaojia
Sharma, Mridula
format Article
author Gluckman, Peter D.
Zhang, C.
Masuda, S.
Kambadur, R.
McFarlane, Craig
Lokireddy, Sudarsanareddy
Ge, Xiaojia
Sharma, Mridula
author_sort Gluckman, Peter D.
title Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
title_short Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
title_full Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
title_fullStr Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
title_full_unstemmed Inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
title_sort inhibition of myostatin protects against diet-induced obesity by enhancing fatty acid oxidation and promoting a brown adipose phenotype in mice
publishDate 2013
url https://hdl.handle.net/10356/97641
http://hdl.handle.net/10220/13216
_version_ 1681034416904732672