Restoring diabetes-induced autophagic flux arrest in ischemic/reperfused heart by ADIPOR (adiponectin receptor) activation involves both AMPK-dependent and AMPK-independent signaling.

dc.contributor.author

Wang, Yajing

dc.contributor.author

Liang, Bin

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Lau, Wayne Bond

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Du, Yunhui

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Guo, Rui

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Yan, Zheyi

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Gan, Lu

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Yan, Wenjun

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Zhao, Jianli

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Gao, Erhe

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Koch, Walter

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Ma, Xin-Liang

dc.date.accessioned

2024-11-14T22:53:42Z

dc.date.available

2024-11-14T22:53:42Z

dc.date.issued

2017-01

dc.description.abstract

Macroautophagy/autophagy is increasingly recognized as an important regulator of myocardial ischemia-reperfusion (MI-R) injury. However, whether and how diabetes may alter autophagy in response to MI-R remains unknown. Deficiency of ADIPOQ, a cardioprotective molecule, markedly increases MI-R injury. However, the role of diabetic hypoadiponectinemia in cardiac autophagy alteration after MI-R is unclear. Utilizing normal control (NC), high-fat-diet-induced diabetes, and Adipoq knockout (adipoq-/-) mice, we demonstrated that autophagosome formation was modestly inhibited and autophagosome clearance was markedly impaired in the diabetic heart subjected to MI-R. adipoq-/- largely reproduced the phenotypic alterations observed in the ischemic-reperfused diabetic heart. Treatment of diabetic and adipoq-/- mice with AdipoRon, a novel ADIPOR (adiponectin receptor) agonist, stimulated autophagosome formation, markedly increased autophagosome clearance, reduced infarct size, and improved cardiac function (P < 0.01 vs vehicle). Mechanistically, AdipoRon caused significant phosphorylation of AMPK-BECN1 (Ser93/Thr119)-class III PtdIns3K (Ser164) and enhanced lysosome protein LAMP2 expression both in vivo and in isolated adult cardiomyocytes. Pharmacological AMPK inhibition or genetic Prkaa2 mutation abolished AdipoRon-induced BECN1 (Ser93/Thr119)-PtdIns3K (Ser164) phosphorylation and AdipoRon-stimulated autophagosome formation. However, AdipoRon-induced LAMP2 expression, AdipoRon-stimulated autophagosome clearance, and AdipoRon-suppressed superoxide generation were not affected by AMPK inhibition. Treatment with MnTMPyP (a superoxide scavenger) increased LAMP2 expression and stimulated autophagosome clearance in simulated ischemic-reperfused cardiomyocytes. However, no additive effect between AdipoRon and MnTMPyP was observed. Collectively, these results demonstrate that hypoadiponectinemia impairs autophagic flux, contributing to enhanced MI-R injury in the diabetic state. ADIPOR activation restores AMPK-mediated autophagosome formation and antioxidant-mediated autophagosome clearance, representing a novel intervention effective against MI-R injury in diabetic conditions.

dc.identifier.issn

1554-8627

dc.identifier.issn

1554-8635

dc.identifier.uri

https://hdl.handle.net/10161/31639

dc.language

eng

dc.publisher

Informa UK Limited

dc.relation.ispartof

Autophagy

dc.relation.isversionof

10.1080/15548627.2017.1358848

dc.rights.uri

https://creativecommons.org/licenses/by-nc/4.0

dc.subject

Cells, Cultured

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Myocytes, Cardiac

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Animals

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Mice, Knockout

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Mice

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Myocardial Reperfusion Injury

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Diabetes Mellitus, Experimental

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Piperidines

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Metalloporphyrins

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Phosphorylation

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Autophagy

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Lysosomal-Associated Membrane Protein 2

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Adiponectin

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Receptors, Adiponectin

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AMP-Activated Protein Kinases

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Beclin-1

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Autophagosomes

dc.title

Restoring diabetes-induced autophagic flux arrest in ischemic/reperfused heart by ADIPOR (adiponectin receptor) activation involves both AMPK-dependent and AMPK-independent signaling.

dc.type

Journal article

duke.contributor.orcid

Koch, Walter|0000-0002-8522-530X

pubs.begin-page

1855

pubs.end-page

1869

pubs.issue

11

pubs.organisational-group

Duke

pubs.organisational-group

School of Medicine

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Clinical Science Departments

pubs.organisational-group

Surgery

pubs.organisational-group

Surgery, Cardiovascular and Thoracic Surgery

pubs.publication-status

Published

pubs.volume

13

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