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Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis

Since TSH receptor (TSHR) expression increases during adipogenesis and signals via cAMP/phospho-cAMP-response element binding protein (CREB), reported to be necessary and sufficient for adipogenesis, we hypothesised that TSHR activation would induce preadipocyte differentiation. Retroviral vectors i...

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Autores principales: Zhang, Lei, Paddon, Carol, Lewis, Mark D, Grennan-Jones, Fiona, Ludgate, Marian
Formato: Texto
Lenguaje:English
Publicado: BioScientifica 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2710974/
https://www.ncbi.nlm.nih.gov/pubmed/19460852
http://dx.doi.org/10.1677/JOE-09-0099
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author Zhang, Lei
Paddon, Carol
Lewis, Mark D
Grennan-Jones, Fiona
Ludgate, Marian
author_facet Zhang, Lei
Paddon, Carol
Lewis, Mark D
Grennan-Jones, Fiona
Ludgate, Marian
author_sort Zhang, Lei
collection PubMed
description Since TSH receptor (TSHR) expression increases during adipogenesis and signals via cAMP/phospho-cAMP-response element binding protein (CREB), reported to be necessary and sufficient for adipogenesis, we hypothesised that TSHR activation would induce preadipocyte differentiation. Retroviral vectors introduced constitutively active TSHR (TSHR*) into 3T3L1 preadipocytes; despite increased cAMP (RIA) and phospho-CREB (western blot) there was no spontaneous adipogenesis (assessed morphologically, using oil red O and QPCR measurement of adipogenesis markers). We speculated that Gβγ signalling may be inhibitory but failed to induce adipogenesis using activated Gsα (gsp*). Inhibition of phosphodiesterases did not promote adipogenesis in TSHR* or gsp* populations. Furthermore, differentiation induced by adipogenic medium with pioglitazone was reduced in TSHR* and abolished in gsp* expressing 3T3L1 cells. TSHR* and gsp* did not inactivate PPARγ (PPARG as listed in the HUGO database) by phosphorylation but expression of PPARγ1 was reduced and PPARγ2 undetectable in gsp*. FOXO1 phosphorylation (required to inactivate this repressor of adipogenesis) was lowest in gsp* despite the activation of AKT by phosphorylation. PROF is a mediator that facilitates FOXO1 phosphorylation by phospho-Akt. Its transcript levels remained constantly low in the gsp* population. In most measurements, the TSHR* cells were between the gsp* and control 3T3L1 preadipocytes. The enhanced down-regulation of PREF1 (adipogenesis inhibitor) permits retention of some adipogenic potential in the TSHR* population. We conclude that Gsα signalling impedes FOXO1 phosphorylation and thus inhibits PPARγ transcription and the alternative promoter usage required to generate PPARγ2, the fat-specific transcription factor necessary for adipogenesis.
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spelling pubmed-27109742009-08-11 Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis Zhang, Lei Paddon, Carol Lewis, Mark D Grennan-Jones, Fiona Ludgate, Marian J Endocrinol Regular papers Since TSH receptor (TSHR) expression increases during adipogenesis and signals via cAMP/phospho-cAMP-response element binding protein (CREB), reported to be necessary and sufficient for adipogenesis, we hypothesised that TSHR activation would induce preadipocyte differentiation. Retroviral vectors introduced constitutively active TSHR (TSHR*) into 3T3L1 preadipocytes; despite increased cAMP (RIA) and phospho-CREB (western blot) there was no spontaneous adipogenesis (assessed morphologically, using oil red O and QPCR measurement of adipogenesis markers). We speculated that Gβγ signalling may be inhibitory but failed to induce adipogenesis using activated Gsα (gsp*). Inhibition of phosphodiesterases did not promote adipogenesis in TSHR* or gsp* populations. Furthermore, differentiation induced by adipogenic medium with pioglitazone was reduced in TSHR* and abolished in gsp* expressing 3T3L1 cells. TSHR* and gsp* did not inactivate PPARγ (PPARG as listed in the HUGO database) by phosphorylation but expression of PPARγ1 was reduced and PPARγ2 undetectable in gsp*. FOXO1 phosphorylation (required to inactivate this repressor of adipogenesis) was lowest in gsp* despite the activation of AKT by phosphorylation. PROF is a mediator that facilitates FOXO1 phosphorylation by phospho-Akt. Its transcript levels remained constantly low in the gsp* population. In most measurements, the TSHR* cells were between the gsp* and control 3T3L1 preadipocytes. The enhanced down-regulation of PREF1 (adipogenesis inhibitor) permits retention of some adipogenic potential in the TSHR* population. We conclude that Gsα signalling impedes FOXO1 phosphorylation and thus inhibits PPARγ transcription and the alternative promoter usage required to generate PPARγ2, the fat-specific transcription factor necessary for adipogenesis. BioScientifica 2009-08 /pmc/articles/PMC2710974/ /pubmed/19460852 http://dx.doi.org/10.1677/JOE-09-0099 Text en © 2009 Society for Endocrinology http://www.endocrinology.org/journals/reuselicence/ This is an Open Access article distributed under the terms of the Society for Endocrinology's Re-use Licence (http://www.endocrinology.org/journals/reuselicence/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular papers
Zhang, Lei
Paddon, Carol
Lewis, Mark D
Grennan-Jones, Fiona
Ludgate, Marian
Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis
title Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis
title_full Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis
title_fullStr Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis
title_full_unstemmed Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis
title_short Gsα signalling suppresses PPARγ2 generation and inhibits 3T3L1 adipogenesis
title_sort gsα signalling suppresses pparγ2 generation and inhibits 3t3l1 adipogenesis
topic Regular papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2710974/
https://www.ncbi.nlm.nih.gov/pubmed/19460852
http://dx.doi.org/10.1677/JOE-09-0099
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