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A long non-coding RNA that harbors a SNP associated with type 2 diabetes regulates the expression of TGM2 gene in pancreatic beta cells

  • Itziar González-Moro
  • , Henar Rojas-Márquez
  • , Maialen Sebastian-delaCruz
  • , Jon Mentxaka-Salgado
  • , Ane Olazagoitia-Garmendia
  • , Luis Manuel Mendoza
  • , Aina Lluch
  • , Federica Fantuzzi
  • , Carmen Lambert
  • , Jessica Ares Blanco
  • , Lorella Marselli
  • , Piero Marchetti
  • , Miriam Cnop
  • , Elías Delgado
  • , José Manuel Fernández-Real
  • , Francisco José Ortega
  • , Ainara Castellanos-Rubio
  • , Izortze Santin
  • University of the Basque Country
  • Biocruces Bizkai HRI
  • Girona Biomedical Research Institute
  • Centro de Investigación Biomédica en Red
  • Université libre de Bruxelles
  • Health Research Institute of the Principality of Asturias (ISPA)
  • University of Barcelona
  • Central University Hospital of Asturias (HUCA)
  • University of Oviedo
  • Cisanello University Hospital
  • Ikerbasque Basque Foundation for Science

Research output: Contribution to journalScientific articlepeer-review

7 Citations (Scopus)

Abstract

Introduction: Most of the disease-associated single nucleotide polymorphisms (SNPs) lie in non- coding regions of the human genome. Many of these variants have been predicted to impact the expression and function of long non-coding RNAs (lncRNA), but the contribution of these molecules to the development of complex diseases remains to be clarified. Methods: Here, we performed a genetic association study between a SNP located in a lncRNA known as LncTGM2 and the risk of developing type 2 diabetes (T2D), and analyzed its implication in disease pathogenesis at pancreatic beta cell level. Genetic association study was performed on human samples linking the rs2076380 polymorphism with T2D and glycemic traits. The pancreatic beta cell line EndoC-bH1 was employed for functional studies based on LncTGM2 silencing and overexpression experiments. Human pancreatic islets were used for eQTL analysis. Results: We have identified a genetic association between LncTGM2 and T2D risk. Functional characterization of the LncTGM2 revealed its implication in the transcriptional regulation of TGM2, coding for a transglutaminase. The T2Dassociated risk allele in LncTGM2 disrupts the secondary structure of this lncRNA, affecting its stability and the expression of TGM2 in pancreatic beta cells. Diminished LncTGM2 in human beta cells impairs glucose-stimulated insulin release. Conclusions: These findings provide novel information on the molecular mechanisms by which T2D-associated SNPs in lncRNAs may contribute to disease, paving the way for the development of new therapies based on the modulation of lncRNAs.

Original languageEnglish
Article number1101934
JournalFrontiers in Endocrinology
Volume14
DOIs
Publication statusPublished - 7 Feb 2023

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • long non-coding RNA
  • pancreatic beta cell
  • single nucleotide pholymorphism (SNP)
  • transglutaminase 2
  • type 2 diabetes

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