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- In Vivo Deletion of β-Cell Drp1 Impairs Insulin Secretion Without Affecting Islet Oxygen Consumption.
In Vivo Deletion of β-Cell Drp1 Impairs Insulin Secretion Without Affecting Islet Oxygen Consumption.
Citation | “In Vivo Deletion Of Β-Cell Drp1 Impairs Insulin Secretion Without Affecting Islet Oxygen Consumption.”. Endocrinology, pp. 3245-3256. . |
Author | Thomas G Hennings, Deeksha G Chopra, Elizabeth R DeLeon, Halena R VanDeusen, Hiromi Sesaki, Matthew J Merrins, Gregory M Ku |
Abstract |
Mitochondria are dynamic organelles that undergo frequent fission and fusion events. Mitochondrial fission is required for ATP production, the tricarboxylic acid cycle, and processes beyond metabolism in a cell-type specific manner. Ex vivo and cell line studies have demonstrated that Drp1, a central regulator of mitochondrial fission, is required for glucose-stimulated insulin secretion (GSIS) in pancreatic β cells. Herein, we set out to interrogate the role of Drp1 in β-cell insulin secretion in vivo. We generated β-cell-specific Drp1 knockout (KO) mice (Drp1β-KO) by crossing a conditional allele of Drp1 to Ins1cre mice, in which Cre recombinase replaces the coding region of the Ins1 gene. Drp1β-KO mice were glucose intolerant due to impaired GSIS but did not progress to fasting hyperglycemia as adults. Despite markedly abnormal mitochondrial morphology, Drp1β-KO islets exhibited normal oxygen consumption rates and an unchanged glucose threshold for intracellular calcium mobilization. Instead, the most profound consequences of β-cell Drp1 deletion were impaired second-phase insulin secretion and impaired glucose-stimulated amplification of insulin secretion. Our data establish Drp1 as an important regulator of insulin secretion in vivo and demonstrate a role for Drp1 in metabolic amplification and calcium handling without affecting oxygen consumption. |
Year of Publication |
2018
|
Journal |
Endocrinology
|
Volume |
159
|
Issue |
9
|
Number of Pages |
3245-3256
|
Date Published |
12/2018
|
ISSN Number |
1945-7170
|
DOI |
10.1210/en.2018-00445
|
Alternate Journal |
Endocrinology
|
PMID |
30052866
|
PMCID |
PMC6107751
|
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