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Am J Physiol Heart Circ Physiol ; 295(2): H890-7, 2008 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-18567713

RESUMO

Cardiomyocyte N-methyl-d-aspartate receptor-1 (NMDA-R1) activation induces mitochondrial dysfunction. Matrix metalloproteinase protease (MMP) induction is a negative regulator of mitochondrial function. Elevated levels of homocysteine [hyperhomocysteinemia (HHCY)] activate latent MMPs and causes myocardial contractile abnormalities. HHCY is associated with mitochondrial dysfunction. We tested the hypothesis that HHCY activates myocyte mitochondrial MMP (mtMMP), induces mitochondrial permeability transition (MPT), and causes contractile dysfunction by agonizing NMDA-R1. The C57BL/6J mice were administered homocystinemia (1.8 g/l) in drinking water to induce HHCY. NMDA-R1 expression was detected by Western blot and confocal microscopy. Localization of MMP-9 in the mitochondria was determined using confocal microscopy. Ultrastructural analysis of the isolated myocyte was determined by electron microscopy. Mitochondrial permeability was measured by a decrease in light absorbance at 540 nm using the spectrophotometer. The effect of MK-801 (NMDA-R1 inhibitor), GM-6001 (MMP inhibitor), and cyclosporine A (MPT inhibitor) on myocyte contractility and calcium transients was evaluated using the IonOptix video edge track detection system and fura 2-AM. Our results demonstrate that HHCY activated the mtMMP-9 and caused MPT by agonizing NMDA-R1. A significant decrease in percent cell shortening, maximal rate of contraction (-dL/dt), and maximal rate of relaxation (+dL/dt) was observed in HHCY. The decay of calcium transient amplitude was faster in the wild type compared with HHCY. Furthermore, the HHCY-induced decrease in percent cell shortening, -dL/dt, and +dL/dt was attenuated in the mice treated with MK-801, GM-6001, and cyclosporin A. We conclude that HHCY activates mtMMP-9 and induces MPT, leading to myocyte mechanical dysfunction by agonizing NMDA-R1.


Assuntos
Hiper-Homocisteinemia/enzimologia , Metaloproteinase 9 da Matriz/metabolismo , Mitocôndrias Cardíacas/enzimologia , Contração Miocárdica , Miócitos Cardíacos/enzimologia , Receptores de N-Metil-D-Aspartato/metabolismo , Animais , Western Blotting , Sinalização do Cálcio , Tamanho Celular , Ciclosporina/farmacologia , Dipeptídeos/farmacologia , Modelos Animais de Doenças , Maleato de Dizocilpina/farmacologia , Ativação Enzimática , Antagonistas de Aminoácidos Excitatórios/farmacologia , Hiper-Homocisteinemia/patologia , Hiper-Homocisteinemia/fisiopatologia , Inibidores de Metaloproteinases de Matriz , Camundongos , Camundongos Endogâmicos C57BL , Microscopia Confocal , Mitocôndrias Cardíacas/efeitos dos fármacos , Mitocôndrias Cardíacas/ultraestrutura , Proteínas de Transporte da Membrana Mitocondrial/antagonistas & inibidores , Proteínas de Transporte da Membrana Mitocondrial/metabolismo , Membranas Mitocondriais/enzimologia , Poro de Transição de Permeabilidade Mitocondrial , Contração Miocárdica/efeitos dos fármacos , Miócitos Cardíacos/efeitos dos fármacos , Miócitos Cardíacos/ultraestrutura , Permeabilidade , Inibidores de Proteases/farmacologia , Receptores de N-Metil-D-Aspartato/antagonistas & inibidores , Fatores de Tempo
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