Control of nuclear receptor activities in metabolism by post-translational modifications.
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Signaling by nuclear receptorsThe role of signalling in cellular cholesterol homeostasisPPARs in obesity-induced T2DM, dyslipidaemia and NAFLD.Retinoic acid actions through mammalian nuclear receptors.Protein Kinase C Is Involved in the Induction of ATP-Binding Cassette Transporter A1 Expression by Liver X Receptor/Retinoid X Receptor Agonist in Human Macrophages.Phosphorylation of PPARγ Affects the Collective Motions of the PPARγ-RXRα-DNA Complex.Coordinated Regulation of PPARγ Expression and Activity through Control of Chromatin Structure in Adipogenesis and Obesity.Metformin inhibits hepatocellular glucose, lipid and cholesterol biosynthetic pathways by transcriptionally suppressing steroid receptor coactivator 2 (SRC-2).General molecular biology and architecture of nuclear receptors.Non-alcoholic Fatty liver disease: the bile Acid-activated farnesoid x receptor as an emerging treatment target.Clock genes and clock-controlled genes in the regulation of metabolic rhythms.Non-alcoholic fatty liver disease: the role of nuclear receptors and circadian rhythmicity.The biological clock and the molecular basis of lysosomal storage diseases.Exploring the emerging complexity in transcriptional regulation of energy homeostasis.PPARs: regulators of metabolism and as therapeutic targets in cardiovascular disease. Part I: PPAR-α.Posttranslational Modifications of Lipid-Activated Nuclear Receptors: Focus on Metabolism.Metformin interferes with bile acid homeostasis through AMPK-FXR crosstalk.Acetylation of lysine 109 modulates pregnane X receptor DNA binding and transcriptional activity.Chromosomal passenger complex hydrodynamics suggests chaperoning of the inactive state by nucleoplasmin/nucleophosmin.A novel nuclear FGF Receptor-1 partnership with retinoid and Nur receptors during developmental gene programming of embryonic stem cells.The Nuclear Receptor Superfamily at Thirty.Nordihydroguaiaretic Acid, a Lignan from Larrea tridentata (Creosote Bush), Protects Against American Lifestyle-Induced Obesity Syndrome Diet-Induced Metabolic Dysfunction in Mice.The E3 ubiquitin ligase Trim13 regulates Nur77 stability via casein kinase 2α
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Control of nuclear receptor activities in metabolism by post-translational modifications.
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on 07 April 2011
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
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vědecký článek
@cs
name
Control of nuclear receptor activities in metabolism by post-translational modifications.
@en
Control of nuclear receptor activities in metabolism by post-translational modifications.
@nl
type
label
Control of nuclear receptor activities in metabolism by post-translational modifications.
@en
Control of nuclear receptor activities in metabolism by post-translational modifications.
@nl
prefLabel
Control of nuclear receptor activities in metabolism by post-translational modifications.
@en
Control of nuclear receptor activities in metabolism by post-translational modifications.
@nl
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Control of nuclear receptor activities in metabolism by post-translational modifications.
@en
P2093
Philippe Lefebvre
Pierrette Aumercier
Wahiba Berrabah
P2860
P304
P356
10.1016/J.FEBSLET.2011.03.066
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P50
P577
2011-04-07T00:00:00Z