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Fatty Acid β-oxidation and Mitochondrial Fusion Are Involved in Cardiac Microvascular Endothelial Cell Protection Induced by Glucagon Receptor Antagonism in Diabetic Mice

Overview
Journal J Diabetes
Specialty Endocrinology
Date 2023 Aug 19
PMID 37596940
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Abstract

Introduction: The role of cardiac microvascular endothelial cells (CMECs) in diabetic cardiomyopathy is not fully understood. We aimed to investigate whether a glucagon receptor (GCGR) monoclonal antibody (mAb) ameliorated diabetic cardiomyopathy and clarify whether and how CMECs participated in the process.

Research Design And Methods: The db/db mice were treated with GCGR mAb or immunoglobulin G (as control) for 4 weeks. Echocardiography was performed to evaluate cardiac function. Immunofluorescent staining was used to determine microvascular density. The proteomic signature in isolated primary CMECs was analyzed by using tandem mass tag-based quantitative proteomic analysis. Some target proteins were verified by using western blot.

Results: Compared with db/m mice, cardiac microvascular density and left ventricular diastolic function were significantly reduced in db/db mice, and this reduction was attenuated by GCGR mAb treatment. A total of 199 differentially expressed proteins were upregulated in db/db mice versus db/m mice and downregulated in GCGR mAb-treated db/db mice versus db/db mice. The enrichment analysis demonstrated that fatty acid β-oxidation and mitochondrial fusion were the key pathways. The changes of the related proteins carnitine palmitoyltransferase 1B, optic atrophy type 1, and mitofusin-1 were further verified by using western blot. The levels of these three proteins were upregulated in db/db mice, whereas this upregulation was attenuated by GCGR mAb treatment.

Conclusion: GCGR antagonism has a protective effect on CMECs and cardiac diastolic function in diabetic mice, and this beneficial effect may be mediated via inhibiting fatty acid β-oxidation and mitochondrial fusion in CMECs.

Citing Articles

Fatty acid β-oxidation and mitochondrial fusion are involved in cardiac microvascular endothelial cell protection induced by glucagon receptor antagonism in diabetic mice.

Wang P, Wei R, Cui X, Jiang Z, Yang J, Zu L J Diabetes. 2023; 15(12):1081-1094.

PMID: 37596940 PMC: 10755618. DOI: 10.1111/1753-0407.13458.

References
1.
Detmer S, Chan D . Complementation between mouse Mfn1 and Mfn2 protects mitochondrial fusion defects caused by CMT2A disease mutations. J Cell Biol. 2007; 176(4):405-14. PMC: 2063976. DOI: 10.1083/jcb.200611080. View

2.
De Bock K, Georgiadou M, Schoors S, Kuchnio A, Wong B, Cantelmo A . Role of PFKFB3-driven glycolysis in vessel sprouting. Cell. 2013; 154(3):651-63. DOI: 10.1016/j.cell.2013.06.037. View

3.
Otera H, Mihara K . Molecular mechanisms and physiologic functions of mitochondrial dynamics. J Biochem. 2011; 149(3):241-51. DOI: 10.1093/jb/mvr002. View

4.
Neal B, Perkovic V, Mahaffey K, de Zeeuw D, Fulcher G, Erondu N . Canagliflozin and Cardiovascular and Renal Events in Type 2 Diabetes. N Engl J Med. 2017; 377(7):644-657. DOI: 10.1056/NEJMoa1611925. View

5.
Davies M, Drexel H, Jornayvaz F, Pataky Z, Seferovic P, Wanner C . Cardiovascular outcomes trials: a paradigm shift in the current management of type 2 diabetes. Cardiovasc Diabetol. 2022; 21(1):144. PMC: 9351217. DOI: 10.1186/s12933-022-01575-9. View