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Hyperglycemia Acutely Increases Cytosolic Reactive Oxygen Species via O-linked GlcNAcylation and CaMKII Activation in Mouse Ventricular Myocytes.
Lu, Shan; Liao, Zhandi; Lu, Xiyuan; Katschinski, Dörthe M; Mercola, Mark; Chen, Ju; Heller Brown, Joan; Molkentin, Jeffery D; Bossuyt, Julie; Bers, Donald M.
Afiliación
  • Lu S; From the Department of Pharmacology, University of California, Davis School of Medicine (S.L., Z.L., J.B., D.M.B.).
  • Liao Z; From the Department of Pharmacology, University of California, Davis School of Medicine (S.L., Z.L., J.B., D.M.B.).
  • Lu X; Department of Cardiology, Renji Hospital School of Medicine, Jiaotong University, Shanghai, China (X.L.).
  • Katschinski DM; Institute of Cardiovascular Physiology, University Medical Centre Göttingen, Germany (D.M.K.).
  • Mercola M; German Center for Cardiovascular Research, Partner Site, Göttingen (D.M.K.).
  • Chen J; Stanford Cardiovascular Institute and Department of Medicine, Stanford University, CA (M.M.).
  • Heller Brown J; Department of Medicine (J.C.), University of California San Diego, La Jolla.
  • Molkentin JD; Department of Pharmacology (J.H.B.), University of California San Diego, La Jolla.
  • Bossuyt J; Department of Pediatrics, University of Cincinnati, Cincinnati Children's Hospital Medical Center, OH (J.D.M.).
  • Bers DM; From the Department of Pharmacology, University of California, Davis School of Medicine (S.L., Z.L., J.B., D.M.B.).
Circ Res ; 126(10): e80-e96, 2020 05 08.
Article en En | MEDLINE | ID: mdl-32134364
ABSTRACT
RATIONALE Diabetes mellitus is a complex, multisystem disease, affecting large populations worldwide. Chronic CaMKII (Ca2+/calmodulin-dependent kinase II) activation may occur in diabetes mellitus and be arrhythmogenic. Diabetic hyperglycemia was shown to activate CaMKII by (1) O-linked attachment of N-acetylglucosamine (O-GlcNAc) at S280 leading to arrhythmia and (2) a reactive oxygen species (ROS)-mediated oxidation of CaMKII that can increase postinfarction mortality.

OBJECTIVE:

To test whether high extracellular glucose (Hi-Glu) promotes ventricular myocyte ROS generation and the role played by CaMKII. METHODS AND

RESULTS:

We tested how extracellular Hi-Glu influences ROS production in adult ventricular myocytes, using DCF (2',7'-dichlorodihydrofluorescein diacetate) and genetically targeted Grx-roGFP2 redox sensors. Hi-Glu (30 mmol/L) significantly increased the rate of ROS generation-an effect prevented in myocytes pretreated with CaMKII inhibitor KN-93 or from either global or cardiac-specific CaMKIIδ KO (knockout) mice. CaMKII KO or inhibition also prevented Hi-Glu-induced sarcoplasmic reticulum Ca2+ release events (Ca2+ sparks). Thus, CaMKII activation is required for Hi-Glu-induced ROS generation and sarcoplasmic reticulum Ca2+ leak in cardiomyocytes. To test the involvement of O-GlcNAc-CaMKII pathway, we inhibited GlcNAcylation removal by Thiamet G (ThmG), which mimicked the Hi-Glu-induced ROS production. Conversely, inhibition of GlcNAcylation (OSMI-1 [(αR)-α-[[(1,2-dihydro-2-oxo-6-quinolinyl)sulfonyl]amino]-N-(2-furanylmethyl)-2-methoxy-N-(2-thienylmethyl)-benzeneacetamide]) prevented ROS induction in response to either Hi-Glu or ThmG. Moreover, in a CRSPR-based knock-in mouse in which the functional GlcNAcylation site on CaMKIIδ was ablated (S280A), neither Hi-Glu nor ThmG induced myocyte ROS generation. So CaMKIIδ-S280 is required for the Hi-Glu-induced (and GlcNAc dependent) ROS production. To identify the ROS source(s), we used different inhibitors of NOX (NADPH oxidase) 2 (Gp91ds-tat peptide), NOX4 (GKT137831), mitochondrial ROS (MitoTempo), and NOS (NO synthase) pathway inhibitors (L-NAME, L-NIO, and L-NPA). Only NOX2 inhibition or KO prevented Hi-Glu/ThmG-induced ROS generation.

CONCLUSIONS:

Diabetic hyperglycemia induces acute cardiac myocyte ROS production by NOX2 that requires O-GlcNAcylation of CaMKIIδ at S280. This novel ROS induction may exacerbate pathological consequences of diabetic hyperglycemia.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Especies Reactivas de Oxígeno / Estrés Oxidativo / Miocitos Cardíacos / Proteína Quinasa Tipo 2 Dependiente de Calcio Calmodulina / Cardiomiopatías Diabéticas / Glucosa / Hiperglucemia Límite: Animals / Humans Idioma: En Revista: Circ Res Año: 2020 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Especies Reactivas de Oxígeno / Estrés Oxidativo / Miocitos Cardíacos / Proteína Quinasa Tipo 2 Dependiente de Calcio Calmodulina / Cardiomiopatías Diabéticas / Glucosa / Hiperglucemia Límite: Animals / Humans Idioma: En Revista: Circ Res Año: 2020 Tipo del documento: Article