30 research outputs found

    L-Cell Differentiation Is Induced by Bile Acids Through GPBAR1 and Paracrine GLP-1 and Serotonin Signaling.

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    Glucagon-like peptide 1 (GLP-1) mimetics are effective drugs for treatment of type 2 diabetes, and there is consequently extensive interest in increasing endogenous GLP-1 secretion and L-cell abundance. Here we identify G-protein-coupled bile acid receptor 1 (GPBAR1) as a selective regulator of intestinal L-cell differentiation. Lithocholic acid and the synthetic GPBAR1 agonist, L3740, selectively increased L-cell density in mouse and human intestinal organoids and elevated GLP-1 secretory capacity. L3740 induced expression of Gcg and transcription factors Ngn3 and NeuroD1 L3740 also increased the L-cell number and GLP-1 levels and improved glucose tolerance in vivo. Further mechanistic examination revealed that the effect of L3740 on L cells required intact GLP-1 receptor and serotonin 5-hydroxytryptamine receptor 4 (5-HT4) signaling. Importantly, serotonin signaling through 5-HT4 mimicked the effects of L3740, acting downstream of GLP-1. Thus, GPBAR1 agonists and other powerful GLP-1 secretagogues facilitate L-cell differentiation through a paracrine GLP-1-dependent and serotonin-mediated mechanism.Wellcome Trust (106262/Z/14/Z, 106263/Z/14/Z) UK Medical Research Council (MRC_MC_UU_12012/

    Human adipogenesis is associated with genome-wide DNA methylation and gene-expression changes

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    Aim: To define the genomic distribution and function of DNA methylation changes during human adipogenesis. Methods: We isolated adipocyte-derived stem cells from 13 individuals and analyzed genome-wide DNA methylation and gene expression in cultured adipocyte-derived stem cells and mature adipocytes. Results: We observed altered DNA methylation of 11,947 CpG sites and altered expression of 11,830 transcripts after differentiation. De novo methylation was observed across all genomic elements. Co-existence of genes with both altered expression and DNA methylation was found in genes important for cell cycle and adipokine signaling. Conclusion: Human adipogenesis is associated with significant DNA methylation changes across the entire genome and may impact regulation of cell cycle and adipokine signaling

    ‘Collectionner la révolution française’, 23rd-25th September 2015, Grenoble and Domaine de Vizille, Musée de la Révolution française

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    Collections of objects from the French Revolution were the topic of discussion, as a modern-day collection of French Revolutionary scholars gathered in Grenoble and then at the Musée de la Révolution française in Vizille, nestled in the Alps. A blog space is far too short to give this fantastic conference full justice but the programme can be found here, and hopefully the ‘actes’ will be published: http://www.upmf-grenoble.fr/servlet/com.univ.collaboratif.utils.LectureFichiergw?ID_FICHIER=134..
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