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RNA sequencing unravels novel L cell constituents and mechanisms of GLP-1 secretion in human gastric bypass-operated intestine.
Miskelly, Michael G; Lindqvist, Andreas; Piccinin, Elena; Hamilton, Alexander; Cowan, Elaine; Nergård, Bent-Johnny; Del Giudice, Rita; Ngara, Mtakai; Cataldo, Luis R; Kryvokhyzha, Dmytro; Volkov, Petr; Engelking, Luke; Artner, Isabella; Lagerstedt, Jens O; Eliasson, Lena; Ahlqvist, Emma; Moschetta, Antonio; Hedenbro, Jan; Wierup, Nils.
Afiliação
  • Miskelly MG; Neuroendocrine Cell Biology, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Lindqvist A; Neuroendocrine Cell Biology, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Piccinin E; Department of Translational Biomedicine and Neuroscience, University of Bari 'Aldo Moro', Bari, Italy.
  • Hamilton A; Department of Interdisciplinary Medicine, University of Bari 'Aldo Moro', Bari, Italy.
  • Cowan E; Molecular Metabolism, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Nergård BJ; Islet Cell Exocytosis, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Del Giudice R; Islet Cell Exocytosis, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Ngara M; Aleris Obesitas, Lund, Sweden.
  • Cataldo LR; Department of Experimental Medical Science, Lund University, Lund, Sweden.
  • Kryvokhyzha D; Department of Biomedical Science and Biofilms - Research Center for Biointerfaces, Malmö University, Malmö, Sweden.
  • Volkov P; Neuroendocrine Cell Biology, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Engelking L; Molecular Metabolism, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Artner I; Novo Nordisk Foundation Centre for Basic Metabolic Research, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark.
  • Lagerstedt JO; Bioinformatics Unit, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Eliasson L; Bioinformatics Unit, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
  • Ahlqvist E; Internal Medicine, University of Texas Southwestern Medical Center, Dallas, TX, USA.
  • Moschetta A; Department of Molecular Genetics, University of Texas Southwestern Medical Center, Dallas, TX, USA.
  • Hedenbro J; Endocrine Cell Differentiation and Function, Stem Cell Centre, Lund University, Malmö, Sweden.
  • Wierup N; Islet Cell Exocytosis, Lund University Diabetes Centre, Lund University, Malmö, Sweden.
Diabetologia ; 67(2): 356-370, 2024 Feb.
Article em En | MEDLINE | ID: mdl-38032369
ABSTRACT
AIMS/

HYPOTHESIS:

Roux-en-Y gastric bypass surgery (RYGB) frequently results in remission of type 2 diabetes as well as exaggerated secretion of glucagon-like peptide-1 (GLP-1). Here, we assessed RYGB-induced transcriptomic alterations in the small intestine and investigated how they were related to the regulation of GLP-1 production and secretion in vitro and in vivo.

METHODS:

Human jejunal samples taken perisurgically and 1 year post RYGB (n=13) were analysed by RNA-seq. Guided by bioinformatics analysis we targeted four genes involved in cholesterol biosynthesis, which we confirmed to be expressed in human L cells, for potential involvement in GLP-1 regulation using siRNAs in GLUTag and STC-1 cells. Gene expression analyses, GLP-1 secretion measurements, intracellular calcium imaging and RNA-seq were performed in vitro. OGTTs were performed in C57BL/6j and iScd1-/- mice and immunohistochemistry and gene expression analyses were performed ex vivo.

RESULTS:

Gene Ontology (GO) analysis identified cholesterol biosynthesis as being most affected by RYGB. Silencing or chemical inhibition of stearoyl-CoA desaturase 1 (SCD1), a key enzyme in the synthesis of monounsaturated fatty acids, was found to reduce Gcg expression and secretion of GLP-1 by GLUTag and STC-1 cells. Scd1 knockdown also reduced intracellular Ca2+ signalling and membrane depolarisation. Furthermore, Scd1 mRNA expression was found to be regulated by NEFAs but not glucose. RNA-seq of SCD1 inhibitor-treated GLUTag cells identified altered expression of genes implicated in ATP generation and glycolysis. Finally, gene expression and immunohistochemical analysis of the jejunum of the intestine-specific Scd1 knockout mouse model, iScd1-/-, revealed a twofold higher L cell density and a twofold increase in Gcg mRNA expression. CONCLUSIONS/

INTERPRETATION:

RYGB caused robust alterations in the jejunal transcriptome, with genes involved in cholesterol biosynthesis being most affected. Our data highlight SCD as an RYGB-regulated L cell constituent that regulates the production and secretion of GLP-1.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Derivação Gástrica / Diabetes Mellitus Tipo 2 Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Derivação Gástrica / Diabetes Mellitus Tipo 2 Idioma: En Ano de publicação: 2024 Tipo de documento: Article