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Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation

Sterol regulatory element binding protein-1c (SREBP-1c) is a key transcription factor that regulates genes involved in the de novo lipid synthesis and glycolysis pathways. The structure, turnover and transactivation potential of SREBP-1c are regulated by macronutrients and hormones via a cascade of...

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Autores principales: Dong, Qingming, Giorgianni, Francesco, Beranova-Giorgianni, Sarka, Deng, Xiong, O'Meally, Robert N., Bridges, Dave, Park, Edwards A., Cole, Robert N., Elam, Marshall B., Raghow, Rajendra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4718510/
https://www.ncbi.nlm.nih.gov/pubmed/26589965
http://dx.doi.org/10.1042/BSR20150234
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author Dong, Qingming
Giorgianni, Francesco
Beranova-Giorgianni, Sarka
Deng, Xiong
O'Meally, Robert N.
Bridges, Dave
Park, Edwards A.
Cole, Robert N.
Elam, Marshall B.
Raghow, Rajendra
author_facet Dong, Qingming
Giorgianni, Francesco
Beranova-Giorgianni, Sarka
Deng, Xiong
O'Meally, Robert N.
Bridges, Dave
Park, Edwards A.
Cole, Robert N.
Elam, Marshall B.
Raghow, Rajendra
author_sort Dong, Qingming
collection PubMed
description Sterol regulatory element binding protein-1c (SREBP-1c) is a key transcription factor that regulates genes involved in the de novo lipid synthesis and glycolysis pathways. The structure, turnover and transactivation potential of SREBP-1c are regulated by macronutrients and hormones via a cascade of signalling kinases. Using MS, we have identified serine 73 as a novel glycogen synthase kinase-3 (GSK-3) phosphorylation site in the rat SREBP-1c purified from McA-RH7777 hepatoma cells. Our site-specific mutagenesis strategy revealed that the turnover of SREBP-1c, containing wild type, phospho-null (serine to alanine) or phospho-mimetic (serine to aspartic acid) substitutions, was differentially regulated. We show that the S73D mutant of pSREBP-1c, that mimicked a state of constitutive phosphorylation, dissociated from the SREBP-1c–SCAP complex more readily and underwent GSK-3-dependent proteasomal degradation via SCF(Fbw7) ubiquitin ligase pathway. Pharmacologic inhibition of GSK-3 or knockdown of GSK-3 by siRNA prevented accelerated degradation of SREBP-1c. As demonstrated by MS, SREBP-1c was phosphorylated in vitro by GSK-3β at serine 73. Phosphorylation of serine 73 also occurs in the intact liver. We propose that GSK-3-mediated phosphorylation of serine 73 in the rat SREBP-1c and its concomitant destabilization represents a novel mechanism involved in the inhibition of de novo lipid synthesis in the liver.
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spelling pubmed-47185102016-02-02 Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation Dong, Qingming Giorgianni, Francesco Beranova-Giorgianni, Sarka Deng, Xiong O'Meally, Robert N. Bridges, Dave Park, Edwards A. Cole, Robert N. Elam, Marshall B. Raghow, Rajendra Biosci Rep Original Papers Sterol regulatory element binding protein-1c (SREBP-1c) is a key transcription factor that regulates genes involved in the de novo lipid synthesis and glycolysis pathways. The structure, turnover and transactivation potential of SREBP-1c are regulated by macronutrients and hormones via a cascade of signalling kinases. Using MS, we have identified serine 73 as a novel glycogen synthase kinase-3 (GSK-3) phosphorylation site in the rat SREBP-1c purified from McA-RH7777 hepatoma cells. Our site-specific mutagenesis strategy revealed that the turnover of SREBP-1c, containing wild type, phospho-null (serine to alanine) or phospho-mimetic (serine to aspartic acid) substitutions, was differentially regulated. We show that the S73D mutant of pSREBP-1c, that mimicked a state of constitutive phosphorylation, dissociated from the SREBP-1c–SCAP complex more readily and underwent GSK-3-dependent proteasomal degradation via SCF(Fbw7) ubiquitin ligase pathway. Pharmacologic inhibition of GSK-3 or knockdown of GSK-3 by siRNA prevented accelerated degradation of SREBP-1c. As demonstrated by MS, SREBP-1c was phosphorylated in vitro by GSK-3β at serine 73. Phosphorylation of serine 73 also occurs in the intact liver. We propose that GSK-3-mediated phosphorylation of serine 73 in the rat SREBP-1c and its concomitant destabilization represents a novel mechanism involved in the inhibition of de novo lipid synthesis in the liver. Portland Press Ltd. 2016-01-15 /pmc/articles/PMC4718510/ /pubmed/26589965 http://dx.doi.org/10.1042/BSR20150234 Text en © 2016 Authors http://creativecommons.org/licenses/by/3.0/ This is an open access article published by Portland Press Limited and distributed under the Creative Commons Attribution Licence 3.0 (http://creativecommons.org/licenses/by/3.0/) .
spellingShingle Original Papers
Dong, Qingming
Giorgianni, Francesco
Beranova-Giorgianni, Sarka
Deng, Xiong
O'Meally, Robert N.
Bridges, Dave
Park, Edwards A.
Cole, Robert N.
Elam, Marshall B.
Raghow, Rajendra
Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation
title Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation
title_full Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation
title_fullStr Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation
title_full_unstemmed Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation
title_short Glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (SREBP-1c) for proteasomal degradation
title_sort glycogen synthase kinase-3-mediated phosphorylation of serine 73 targets sterol response element binding protein-1c (srebp-1c) for proteasomal degradation
topic Original Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4718510/
https://www.ncbi.nlm.nih.gov/pubmed/26589965
http://dx.doi.org/10.1042/BSR20150234
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