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Molecular phenotyping of single pancreatic islet leader beta cells by 'Flash-Seq'

Authors :
Pauline Chabosseau
Fiona Yong
Luis F. Delgadillo-Silva
Eun Young Lee
Rana Melhem
Shiying Li
Nidhi Gandhi
Jules Wastin
Livia Lopez Noriega
Isabelle Leclerc
Yusuf Ali
Jing W. Hughes
Robert Sladek
Aida Martinez-Sanchez
Guy A. Rutter
Source :
Life Sciences. 316:121436
Publication Year :
2023
Publisher :
Elsevier BV, 2023.

Abstract

AIMS: Spatially-organized increases in cytosolic Ca2+ within pancreatic beta cells in the pancreatic islet underlie the stimulation of insulin secretion by high glucose. Recent data have revealed the existence of subpopulations of beta cells including "leaders" which initiate Ca2+ waves. Whether leader cells possess unique molecular features, or localisation, is unknown. MAIN METHODS: High speed confocal Ca2+ imaging was used to identify leader cells and connectivity analysis, running under MATLAB and Python, to identify highly connected "hub" cells. To explore transcriptomic differences between beta cell sub-groups, individual leaders or followers were labelled by photo-activation of the cryptic fluorescent protein PA-mCherry and subjected to single cell RNA sequencing ("Flash-Seq"). KEY FINDINGS: Distinct Ca2+ wave types were identified in individual islets, with leader cells present in 73 % (28 of 38 islets imaged). Scale-free, power law-adherent behaviour was also observed in 29 % of islets, though "hub" cells in these islets did not overlap with leaders. Transcripts differentially expressed (295; padj

Details

ISSN :
00243205
Volume :
316
Database :
OpenAIRE
Journal :
Life Sciences
Accession number :
edsair.doi.dedup.....553e1879d5083e8e5a9161b9136b31ad
Full Text :
https://doi.org/10.1016/j.lfs.2023.121436