Dynamic Ins2 Gene Activity Defines β-Cell Maturity States

Author:

Chu Chieh Min Jamie1,Modi Honey1,Ellis Cara1,Krentz Nicole A.J.2,Skovsø Søs1,Zhao Yiwei Bernie3,Cen Haoning1,Noursadeghi Nilou1,Panzhinskiy Evgeniy1,Hu Xiaoke1,Dionne Derek A.1,Xia Yi Han1,Xuan Shouhong4,Huising Mark O.56,Kieffer Timothy J.1,Lynn Francis C.2,Johnson James D.1ORCID

Affiliation:

1. 1Diabetes Focus Team, Life Sciences Institute, Departments of Cellular and Physiological Sciences and Surgery, University of British Columbia, Vancouver, Canada

2. 2BC Children’s Hospital Research Institute, Department of Surgery, University of British Columbia, Vancouver, Canada

3. 3Biomedical Research Centre, Departments of Cellular and Physiological Sciences and Surgery, University of British Columbia, Vancouver, Canada

4. 4Division of Hematology/Oncology, Department of Medicine, Columbia University Medical Center, New York, NY

5. 5Department of Neurobiology, Physiology and Behavior, University of California, Davis, Davis, CA

6. 6Department of Physiology and Membrane Biology, University of California, Davis, Davis, CA

Abstract

Transcriptional and functional cellular specialization has been described for insulin-secreting β-cells of the endocrine pancreas. However, it is not clear whether β-cell heterogeneity is stable or reflects dynamic cellular states. We investigated the temporal kinetics of endogenous insulin gene activity using live cell imaging, with complementary experiments using FACS and single-cell RNA sequencing, in β-cells from Ins2GFP knockin mice. In vivo staining and FACS analysis of islets from Ins2GFP mice confirmed that at a given moment, ∼25% of β-cells exhibited significantly higher activity at the evolutionarily conserved insulin gene, Ins2. Live cell imaging over days captured Ins2 gene activity dynamics in single β-cells. Autocorrelation analysis revealed a subset of oscillating cells, with mean oscillation periods of 17 h. Increased glucose concentrations stimulated more cells to oscillate and resulted in higher average Ins2 gene activity per cell. Single-cell RNA sequencing showed that Ins2(GFP)HIGH β-cells were enriched for markers of β-cell maturity. Ins2(GFP)HIGH β-cells were also significantly less viable at all glucose concentrations and in the context of endoplasmic reticulum stress. Collectively, our results demonstrate that the heterogeneity of insulin production, observed in mouse and human β-cells, can be accounted for by dynamic states of insulin gene activity.

Funder

CIHR

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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