Litcius/Paper detail

Molecular Mechanisms of Nutrient-Mediated Regulation of MicroRNAs in Pancreatic β-cells

Anna Sałówka, Aida Martínez-Sánchez

2021Frontiers in Endocrinology10 citationsDOIOpen Access PDF

Abstract

Pancreatic β-cells within the islets of Langerhans respond to rising blood glucose levels by secreting insulin that stimulates glucose uptake by peripheral tissues to maintain whole body energy homeostasis. To different extents, failure of β-cell function and/or β-cell loss contribute to the development of Type 1 and Type 2 diabetes. Chronically elevated glycaemia and high circulating free fatty acids, as often seen in obese diabetics, accelerate β-cell failure and the development of the disease. MiRNAs are essential for endocrine development and for mature pancreatic β-cell function and are dysregulated in diabetes. In this review, we summarize the different molecular mechanisms that control miRNA expression and function, including transcription, stability, posttranscriptional modifications, and interaction with RNA binding proteins and other non-coding RNAs. We also discuss which of these mechanisms are responsible for the nutrient-mediated regulation of the activity of β-cell miRNAs and identify some of the more important knowledge gaps in the field.

Topics & Concepts

microRNATranscription factorBiologyGlucose homeostasisEndocrine systemType 2 diabetesPancreatic isletsHomeostasisInsulinCell biologyFunction (biology)Enteroendocrine cellEndocrinologyDiabetes mellitusIsletEnergy homeostasisCellCell typePancreasRegulatorInsulin resistanceGeneHormoneBiochemistryObesityMicroRNA in disease regulationPancreatic function and diabetesRNA modifications and cancer
Molecular Mechanisms of Nutrient-Mediated Regulation of MicroRNAs in Pancreatic β-cells | Litcius