Calpain 1 cleaves and inactivates prostacyclin synthase in mesenteric arteries from diabetic mice

被引:0
作者
Voahanginirina Randriamboavonjy
Anastasia Kyselova
Amro Elgheznawy
Sven Zukunft
Ilka Wittig
Ingrid Fleming
机构
[1] Goethe University,Centre for Molecular Medicine, Institute for Vascular Signalling
[2] German Center of Cardiovascular Research (DZHK),ECCPS Metabolomics Facility, Centre for Molecular Medicine, Institute for Vascular Signalling
[3] Partner Site RheinMain,Functional Proteomics, SFB 815 Core Unit, Faculty of Medicine
[4] Goethe University,undefined
[5] Goethe University,undefined
来源
Basic Research in Cardiology | 2017年 / 112卷
关键词
Calpain inhibitor; Diabetes mellitus; Endothelial dysfunction; Palmitate; Thromboxane A;
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摘要
Diabetes is associated with a number of co-morbidities including an increased risk of developing cardiovascular diseases. The activation of Ca2+-activated proteases of the calpain family has been implicated in platelet activation associated with diabetes and this study aimed to determine the role of calpain activation in the development of endothelial dysfunction. Diabetes induction in mice attenuated acetylcholine-induced relaxation of mesenteric artery rings, an effect prevented in mice receiving a calpain inhibitor. A nitric oxide-independent but diclofenac-sensitive component of the relaxation–response was altered and correlated with a loss of prostacyclin (PGI2) generation and reduced vascular levels of PGI2 synthase. Calpain inhibition was also able to restore PGI2 synthase levels and PGI2 generation in arteries from diabetic animals. The effects of diabetes were reproduced in vitro by a combination of high glucose and palmitate, which elicited calpain activation, PGI2 synthase cleavage and inactivation as well as endothelial dysfunction in mesenteric arteries from wild-type mice. PGI2 cleavage was not observed in arteries from calpain 1−/− mice or mice overexpressing the endogenous calpain inhibitor calpastatin. Finally, proteomic analyses revealed that calpain 1 cleaved the C-terminal domain of PGI2 synthase close to the catalytic site of the enzyme. These data demonstrate that diabetes leads to the activation of calpain 1 in mesenteric arteries and can initiate endothelial dysfunction by cleaving and inactivating the PGI2 synthase. Given that calpain inhibition prevented diabetes-induced endothelial dysfunction in mesenteric arteries, calpains represent an interesting therapeutic target for the prevention of cardiovascular complication of diabetes.
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[1]  
Adeagbo AS(1990)Mechanism of vascular actions of prostacyclin in the rat isolated perfused mesenteric arteries J Pharmacol Exp Ther 252 26-34
[2]  
Malik KU(2007)Proteolytic degradation of nitric oxide synthase isoforms by calpain is modulated by the expression levels of HSP90 FEBS J 274 6116-6127
[3]  
Averna M(2008)In vivo degradation of nitric oxide synthase (NOS) and heat shock protein 90 (HSP90) by calpain is modulated by the formation of a NOS-HSP90 heterocomplex FEBS J 275 2501-2511
[4]  
Stifanese R(1976)Arterial walls generate from prostaglandin endoperoxides a substance (prostaglandin X) which relaxes strips of mesenteric and coeliac arteries and inhibits platelet aggregation Prostaglandins 12 897-913
[5]  
De TR(2015)Hyperhomocysteinemia and hyperglycemia induce and potentiate endothelial dysfunction via mu-calpain activation Diabetes 64 947-959
[6]  
Salamino F(2001)Prostaglandin H synthase and vascular function Circ Res 89 650-660
[7]  
Bertuccio M(2006)Insulin resistance reduces arterial prostacyclin synthase and eNOS activities by increasing endothelial fatty acid oxidation J Clin Invest 116 1071-1080
[8]  
Pontremoli S(2010)In utero exposure to maternal diabetes impairs vascular expression of prostacyclin receptor in rat offspring Diabetes 59 2597-2602
[9]  
Melloni E(2011)Calpain cleavage prediction using multiple kernel learning PLoS One 6 e19035-1128
[10]  
Averna M(1999)Isometric contraction induces the Ca Proc Natl Acad Sci USA 96 1123-E75