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Differential CpG methylation at Nnat in the early establishment of beta cell heterogeneity.
Yu, Vanessa; Yong, Fiona; Marta, Angellica; Khadayate, Sanjay; Osakwe, Adrien; Bhattacharya, Supriyo; Varghese, Sneha S; Chabosseau, Pauline; Tabibi, Sayed M; Chen, Keran; Georgiadou, Eleni; Parveen, Nazia; Suleiman, Mara; Stamoulis, Zoe; Marselli, Lorella; De Luca, Carmela; Tesi, Marta; Ostinelli, Giada; Delgadillo-Silva, Luis; Wu, Xiwei; Hatanaka, Yuki; Montoya, Alex; Elliott, James; Patel, Bhavik; Demchenko, Nikita; Whilding, Chad; Hajkova, Petra; Shliaha, Pavel; Kramer, Holger; Ali, Yusuf; Marchetti, Piero; Sladek, Robert; Dhawan, Sangeeta; Withers, Dominic J; Rutter, Guy A; Millership, Steven J.
Afiliación
  • Yu V; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Yong F; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Marta A; Lee Kong Chian School of Medicine, Nanyang Technological University, 637553, Singapore.
  • Khadayate S; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Osakwe A; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Bhattacharya S; Departments of Medicine, Human Genetics and Quantitative Life Sciences, McGill University and Genome Quebec Innovation Centre, Montreal, QC, Canada.
  • Varghese SS; Department of Computational and Quantitative Medicine, Beckman Research Institute, City of Hope, 1500 E Duarte Road, Duarte, CA 91010, USA.
  • Chabosseau P; Department of Translational Research and Cellular Therapeutics, Arthur Riggs Diabetes and Metabolism Research Institute, City of Hope, 1500 E Duarte Road, Duarte, CA 91010, USA.
  • Tabibi SM; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Chen K; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Georgiadou E; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Parveen N; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • Suleiman M; Department of Translational Research and Cellular Therapeutics, Arthur Riggs Diabetes and Metabolism Research Institute, City of Hope, 1500 E Duarte Road, Duarte, CA 91010, USA.
  • Stamoulis Z; Department of Clinical and Experimental Medicine, and AOUP Cisanello University Hospital, University of Pisa, Pisa 56126, Italy.
  • Marselli L; Department of Metabolism, Digestion and Reproduction, Faculty of Medicine, Imperial College London, Du Cane Road, London, W12 0NN, UK.
  • De Luca C; Department of Clinical and Experimental Medicine, and AOUP Cisanello University Hospital, University of Pisa, Pisa 56126, Italy.
  • Tesi M; Department of Clinical and Experimental Medicine, and AOUP Cisanello University Hospital, University of Pisa, Pisa 56126, Italy.
  • Ostinelli G; Department of Clinical and Experimental Medicine, and AOUP Cisanello University Hospital, University of Pisa, Pisa 56126, Italy.
  • Delgadillo-Silva L; CHUM Research Center and Faculty of Medicine, University of Montréal, 900 Rue St Denis, Montréal, H2X OA9, QC, Canada.
  • Wu X; CHUM Research Center and Faculty of Medicine, University of Montréal, 900 Rue St Denis, Montréal, H2X OA9, QC, Canada.
  • Hatanaka Y; Department of Computational and Quantitative Medicine, Beckman Research Institute, City of Hope, 1500 E Duarte Road, Duarte, CA 91010, USA.
  • Montoya A; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Elliott J; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Patel B; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Demchenko N; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Whilding C; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Hajkova P; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Shliaha P; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Kramer H; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Ali Y; MRC Laboratory of Medical Sciences, Du Cane Road, London, W12 0NN, UK.
  • Marchetti P; Nutrition, Metabolism and Health Programme & Centre for Microbiome Medicine, Lee Kong Chian School of Medicine, Nanyang Technological University Singapore, Singapore, 308232.
  • Sladek R; Singapore Eye Research Institute (SERI), Singapore General Hospital, Singapore, 168751.
  • Dhawan S; Clinical Research Unit, Khoo Teck Puat Hospital, National Healthcare Group, Singapore, 768828.
  • Withers DJ; Department of Clinical and Experimental Medicine, and AOUP Cisanello University Hospital, University of Pisa, Pisa 56126, Italy.
  • Rutter GA; Departments of Medicine, Human Genetics and Quantitative Life Sciences, McGill University and Genome Quebec Innovation Centre, Montreal, QC, Canada.
  • Millership SJ; Department of Translational Research and Cellular Therapeutics, Arthur Riggs Diabetes and Metabolism Research Institute, City of Hope, 1500 E Duarte Road, Duarte, CA 91010, USA.
bioRxiv ; 2023 Nov 30.
Article en En | MEDLINE | ID: mdl-38076935
ABSTRACT
Aims/

hypothesis:

Beta cells within the pancreatic islet represent a heterogenous population wherein individual sub-groups of cells make distinct contributions to the overall control of insulin secretion. These include a subpopulation of highly-connected 'hub' cells, important for the propagation of intercellular Ca2+ waves. Functional subpopulations have also been demonstrated in human beta cells, with an altered subtype distribution apparent in type 2 diabetes. At present, the molecular mechanisms through which beta cell hierarchy is established are poorly understood. Changes at the level of the epigenome provide one such possibility which we explore here by focussing on the imprinted gene neuronatin (Nnat), which is required for normal insulin synthesis and secretion.

Methods:

Single cell RNA-seq datasets were examined using Seurat 4.0 and ClusterProfiler running under R. Transgenic mice expressing eGFP under the control of the Nnat enhancer/promoter regions were generated for fluorescence-activated cell (FAC) sorting of beta cells and downstream analysis of CpG methylation by bisulphite and RNA sequencing, respectively. Animals deleted for the de novo methyltransferase, DNMT3A from the pancreatic progenitor stage were used to explore control of promoter methylation. Proteomics was performed using affinity purification mass spectrometry and Ca2+ dynamics explored by rapid confocal imaging of Cal-520 and Cal-590. Insulin secretion was measured using Homogeneous Time Resolved Fluorescence Imaging.

Results:

Nnat mRNA was differentially expressed in a discrete beta cell population in a developmental stage- and DNA methylation (DNMT3A)-dependent manner. Thus, pseudo-time analysis of embryonic data sets demonstrated the early establishment of Nnat-positive and negative subpopulations during embryogenesis. NNAT expression is also restricted to a subset of beta cells across the human islet that is maintained throughout adult life. NNAT+ beta cells also displayed a discrete transcriptome at adult stages, representing a sub-population specialised for insulin production, reminiscent of recently-described "ßHI" cells and were diminished in db/db mice. 'Hub' cells were less abundant in the NNAT+ population, consistent with epigenetic control of this functional specialization. Conclusions/

interpretation:

These findings demonstrate that differential DNA methylation at Nnat represents a novel means through which beta cell heterogeneity is established during development. We therefore hypothesise that changes in methylation at this locus may thus contribute to a loss of beta cell hierarchy and connectivity, potentially contributing to defective insulin secretion in some forms of diabetes.
Palabras clave

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: BioRxiv Año: 2023 Tipo del documento: Article País de afiliación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: BioRxiv Año: 2023 Tipo del documento: Article País de afiliación: Reino Unido
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