Glucocorticoids Reprogram β-Cell Signaling to Preserve Insulin Secretion

Author:

Fine Nicholas H.F.12,Doig Craig L.12,Elhassan Yasir S.12,Vierra Nicholas C.3,Marchetti Piero4,Bugliani Marco4,Nano Rita5,Piemonti Lorenzo5ORCID,Rutter Guy A.6ORCID,Jacobson David A.3,Lavery Gareth G.12,Hodson David J.127ORCID

Affiliation:

1. Institute of Metabolism and Systems Research, University of Birmingham, Edgbaston, U.K.

2. Centre for Endocrinology, Diabetes and Metabolism, Birmingham Health Partners, Birmingham, U.K.

3. Department of Molecular Physiology and Biophysics, Vanderbilt University, Nashville, TN

4. Department of Clinical and Experimental Medicine, University of Pisa, Pisa, Italy

5. Diabetes Research Institute, San Raffaele Scientific Institute, Milan, Italy

6. Section of Cell Biology and Functional Genomics, Department of Medicine, Imperial College London, London, U.K.

7. Centre of Membrane Proteins and Receptors, University of Birmingham and University of Nottingham, Midlands, U.K.

Abstract

Excessive glucocorticoid exposure has been shown to be deleterious for pancreatic β-cell function and insulin release. However, glucocorticoids at physiological levels are essential for many homeostatic processes, including glycemic control. We show that corticosterone and cortisol and their less active precursors 11-dehydrocorticosterone (11-DHC) and cortisone suppress voltage-dependent Ca2+ channel function and Ca2+ fluxes in rodent as well as in human β-cells. However, insulin secretion, maximal ATP/ADP responses to glucose, and β-cell identity were all unaffected. Further examination revealed the upregulation of parallel amplifying cAMP signals and an increase in the number of membrane-docked insulin secretory granules. Effects of 11-DHC could be prevented by lipotoxicity and were associated with paracrine regulation of glucocorticoid activity because global deletion of 11β-hydroxysteroid dehydrogenase type 1 normalized Ca2+ and cAMP responses. Thus, we have identified an enzymatically amplified feedback loop whereby glucocorticoids boost cAMP to maintain insulin secretion in the face of perturbed ionic signals. Failure of this protective mechanism may contribute to diabetes in states of glucocorticoid excess, such as Cushing syndrome, which are associated with frank dyslipidemia.

Funder

National Institutes of Health

American Diabetes Association

JDRF

Wellcome Trust

Medical Research Council

Biological and Biotechnology Research Council

Diabetes UK

European Foundation for the Study of Diabetes

European Research Council

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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