Decreased KATP Channel Activity Contributes to the Low Glucose Threshold for Insulin Secretion of Rat Neonatal Islets

Author:

Yang Juxiang1,Hammoud Batoul1,Li Changhong1,Ridler Abigail1,Yau Daphne1,Kim Junil23ORCID,Won Kyoung-Jae2,Stanley Charles A14,Hoshi Toshinori5,Stanescu Diana E14ORCID

Affiliation:

1. Division of Endocrinology and Diabetes, The Children’s Hospital of Philadelphia, Philadelphia, PA 19104, USA

2. Biotech Research & Innovation Centre, University of Copenhagen, DK-2200 Copenhagen N, Denmark

3. School of Systems Biomedical Science, Soongsil University, Seoul 06978, South Korea

4. Department of Pediatrics, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA

5. Department of Physiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA

Abstract

Abstract Transitional hypoglycemia in normal newborns occurs in the first 3 days of life and has clinical features consistent with hyperinsulinism. We found a lower threshold for glucose-stimulated insulin secretion from freshly isolated embryonic day (E) 22 rat islets, which persisted into the first postnatal days. The threshold reached the adult level by postnatal day (P) 14. Culturing P14 islets also decreased the glucose threshold. Freshly isolated P1 rat islets had a lower threshold for insulin secretion in response to 2-aminobicyclo-(2, 2, 1)-heptane-2-carboxylic acid, a nonmetabolizable leucine analog, and diminished insulin release in response to tolbutamide, an inhibitor of β-cell KATP channels. These findings suggested that decreased KATP channel function could be responsible for the lower glucose threshold for insulin secretion. Single-cell transcriptomic analysis did not reveal a lower expression of KATP subunit genes in E22 compared with P14 β cells. The investigation of electrophysiological characteristics of dispersed β cells showed that early neonatal and cultured cells had fewer functional KATP channels per unit membrane area. Our findings suggest that decreased surface density of KATP channels may contribute to the observed differences in glucose threshold for insulin release.

Funder

American Diabetes Association Junior Faculty Development Award

National Institutes of Health

Novo Nordisk Foundation

Publisher

The Endocrine Society

Subject

Endocrinology

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