Carbohydrate Sensing Through the Transcription Factor ChREBP

被引:116
作者
Ortega-Prieto, Paula [1 ]
Postic, Catherine [1 ]
机构
[1] Univ Paris, Inst Cochin, CNRS, INSERM, Paris, France
来源
FRONTIERS IN GENETICS | 2019年 / 10卷
基金
欧盟地平线“2020”;
关键词
ChREBP; carbohydrate sensing; transcriptional regulation; metabolism; insulin sensitivity; ELEMENT-BINDING PROTEIN; INSULIN-RESISTANCE; HEPATIC STEATOSIS; PPAR-ALPHA; METABOLITE REGULATION; XYLULOSE; 5-PHOSPHATE; MEDIATED INDUCTION; CIRCULATING FGF21; GLUCOSE; LIPOGENESIS;
D O I
10.3389/fgene.2019.00472
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Carbohydrate response element binding protein (ChREBP) is a carbohydrate-signaling transcription factor that in the past years has emerged as a central metabolic regulator. ChREBP expression is mostly abundant in active sites of de novo lipogenesis including liver and white and brown adipose tissues. ChREBP is also expressed in pancreatic islets, small intestine and to a lesser extent in the kidney and the brain. In response to glucose, ChREBP undergoes several post-translational modifications (PTMs) (phosphorylation, acetylation and/or O-GlcNAcylation) that will either modulate its cellular location, stability and/or its transcriptional activity. ChREBP beta is a shorter isoform of ChREBP that was first described in adipose tissue and later found to be expressed in other sites including liver and pancreatic beta cells. ChREBP beta lacks an important regulatory inhibitory domain, known as LID (low glucose inhibitory domain), in its N-terminal domain and is therefore reported as a highly active isoform. In this review, we recapitulate a recent progress concerning the mechanisms governing the activity of the ChREBP isoforms, including PTMs, partners/cofactors as well as novel metabolic pathways regulated by ChREBP in key metabolic tissues, by discussing phenotypes associated with tissue-specific deletion of ChREBP in knockout mice.
引用
收藏
页数:9
相关论文
共 58 条
  • [31] FGF-21 as a novel metabolic regulator
    Kharitonenkov, A
    Shiyanova, TL
    Koester, A
    Ford, AM
    Micanovic, R
    Galbreath, EJ
    Sandusky, GE
    Hammond, LJ
    Moyers, JS
    Owens, RA
    Gromada, J
    Brozinick, JT
    Hawkins, ED
    Wroblewski, VJ
    Li, DS
    Mehrbod, F
    Jaskunas, SR
    Shanafelt, AB
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2005, 115 (06) : 1627 - 1635
  • [32] ChREBP regulates fructose-induced glucose production independently of insulin signaling
    Kim, Mi-Sung
    Krawczyk, Sarah A.
    Doridot, Ludivine
    Fowler, Alan J.
    Wang, Jennifer X.
    Trauger, Sunia A.
    Noh, Hye-Lim
    Kang, Hee Joon
    Meissen, John K.
    Blatnik, Matthew
    Kim, Jason K.
    Lai, Michelle
    Herman, Mark A.
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 2016, 126 (11) : 4372 - 4386
  • [33] Intestinal, but not hepatic, ChREBP is required for fructose tolerance
    Kim, MiSung
    Astapova, Inna I.
    Flier, Sarah N.
    Hannou, Sarah A.
    Doridot, Ludivine
    Sargsyan, Ashot
    Kou, Henry H.
    Fowler, Alan J.
    Liang, Guosheng
    Herman, Mark A.
    [J]. JCI INSIGHT, 2017, 2 (24):
  • [34] Glucose-dependent transcriptional regulation by an evolutionarily conserved glucose-sensing module
    Li, MV
    Chang, B
    Imamura, M
    Poungvarin, N
    Chan, L
    [J]. DIABETES, 2006, 55 (05) : 1179 - 1189
  • [35] Interplay between ChREBP and SREBP-1c coordinates postprandial glycolysis and lipogenesis in livers of mice
    Linden, Albert G.
    Li, Shili
    Choi, Hwa Y.
    Fang, Fei
    Fukasawa, Masashi
    Uyeda, Kosaku
    Hammer, Robert E.
    Horton, Jay D.
    Engelking, Luke J.
    Liang, Guosheng
    [J]. JOURNAL OF LIPID RESEARCH, 2018, 59 (03) : 475 - 487
  • [36] Circulating FGF21 Is Liver Derived and Enhances Glucose Uptake During Refeeding and Overfeeding
    Markan, Kathleen R.
    Naber, Meghan C.
    Ameka, Magdalene K.
    Anderegg, Maxwell D.
    Mangelsdorf, David J.
    Kliewer, Steven A.
    Mohammadi, Moosa
    Potthoff, Matthew J.
    [J]. DIABETES, 2014, 63 (12) : 4057 - 4063
  • [37] A Novel N-Terminal Domain May Dictate the Glucose Response of Mondo Proteins
    McFerrin, Lisa G.
    Atchley, William R.
    [J]. PLOS ONE, 2012, 7 (04):
  • [38] Meng J., 2016, SCI REP, V6, P2394
  • [39] Interaction between hormone-sensitive lipase and ChREBP in fat cells controls insulin sensitivity
    Morigny, Pauline
    Houssier, Marianne
    Mairal, Aline
    Ghilain, Claire
    Mouisel, Etienne
    Benhamed, Fadila
    Masri, Bernard
    Recazens, Emeline
    Denechaud, Pierre-Damien
    Tavernier, Genevieve
    Caspar-Bauguil, Sylvie
    Virtue, Sam
    Sramkova, Veronika
    Monbrun, Laurent
    Mazars, Anne
    Zanoun, Madjid
    Guilmeau, Sandra
    Barquissau, Valentin
    Beuzelin, Diane
    Bonnel, Sophie
    Marques, Marie
    Monge-Roffarello, Boris
    Lefort, Corinne
    Fielding, Barbara
    Sulpice, Thierry
    Astrup, Arne
    Payrastre, Bernard
    Bertrand-Michel, Justine
    Meugnier, Emmanuelle
    Ligat, Laetitia
    Lopez, Frederic
    Guillou, Herve
    Ling, Charlotte
    Holm, Cecilia
    Rabasa-Lhoret, Remi
    Saris, Wim H. M.
    Stich, Vladimir
    Arner, Peter
    Ryden, Mikael
    Moro, Cedric
    Viguerie, Nathalie
    Harms, Matthew
    Hallen, Stefan
    Vidal-Puig, Antonio
    Vidal, Hubert
    Postic, Catherine
    Langin, Dominique
    [J]. NATURE METABOLISM, 2019, 1 (01) : 133 - 146
  • [40] Metabolite Regulation of Nucleo-cytosolic Trafficking of Carbohydrate Response Element-binding Protein (ChREBP) ROLE OF KETONE BODIES
    Nakagawa, Tsutomu
    Ge, Qiang
    Pawlosky, Robert
    Wynn, R. Max
    Veech, Richard L.
    Uyeda, Kosaku
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2013, 288 (39) : 28358 - 28367