García-Niño Wylly Ramsés, Correa Francisco, Rodríguez-Barrena Julia Isabel, León-Contreras Juan Carlos, Buelna-Chontal Mabel, Soria-Castro Elizabeth, Hernández-Pando Rogelio, Pedraza-Chaverri José, Zazueta Cecilia
Departamento de Biomedicina Cardiovascular, Instituto Nacional de Cardiología "Ignacio Chávez", Juan Badiano No. 1, Sección XVI, 14080, Ciudad de México, México.
Departamento de Patología, Instituto Nacional de Ciencias Médicas y Nutrición "Salvador Zubirán", 14000, Ciudad de México, México.
Basic Res Cardiol. 2017 Mar;112(2):15. doi: 10.1007/s00395-017-0607-4. Epub 2017 Feb 3.
The demonstration that caveolin-3 overexpression reduces myocardial ischemia/reperfusion injury and our own finding that multiprotein signaling complexes increase in mitochondria in association with caveolin-3 levels, led us to investigate the contribution of caveolae-driven extracellular signal-regulated kinases 1/2 (ERK1/2) on maintaining the function of cardiac mitochondrial subpopulations from reperfused hearts subjected to postconditioning (PostC). Rat hearts were isolated and subjected to ischemia/reperfusion and to PostC. Enhanced cardiac function, reduced infarct size and preserved ultrastructure of cardiomyocytes were associated with increased formation of caveolar structures, augmented levels of caveolin-3 and mitochondrial ERK1/2 activation in PostC hearts in both subsarcolemmal (SSM) and interfibrillar (IFM) subpopulations. Disruption of caveolae with methyl-β-cyclodextrin abolished cardioprotection in PostC hearts and diminished pho-ERK1/2 gold-labeling in both mitochondrial subpopulations in correlation with suppression of resistance to permeability transition pore opening. Also, differences between the mitochondrial subpopulations in the setting of PostC were evaluated. Caveolae disruption with methyl-β-cyclodextrin abolished the cardioprotective effect of postconditioning by inhibiting the interaction of ERK1/2 with mitochondria and promoted decline in mitochondrial function. SSM, which are particularly sensitive to reperfusion damage, take advantage of their location in cardiomyocyte boundary and benefit from the cardioprotective signaling driven by caveolae, avoiding injury propagation.
小窝蛋白-3过表达可减轻心肌缺血/再灌注损伤,以及我们自己的发现,即多蛋白信号复合物在线粒体中的增加与小窝蛋白-3水平相关,这促使我们研究小窝介导的细胞外信号调节激酶1/2(ERK1/2)对维持经后处理(PostC)的再灌注心脏中心肌线粒体亚群功能的作用。分离大鼠心脏并进行缺血/再灌注和后处理。在PostC心脏的肌膜下(SSM)和肌原纤维间(IFM)亚群中,心脏功能增强、梗死面积减小以及心肌细胞超微结构的保留与小窝结构形成增加、小窝蛋白-3水平升高和线粒体ERK1/2激活有关。用甲基-β-环糊精破坏小窝可消除PostC心脏中的心脏保护作用,并减少两个线粒体亚群中的磷酸化ERK1/2金标记,这与对通透性转换孔开放抗性的抑制相关。此外,还评估了PostC情况下线粒体亚群之间的差异。用甲基-β-环糊精破坏小窝可通过抑制ERK1/2与线粒体的相互作用而消除后处理的心脏保护作用,并促进线粒体功能下降。对再灌注损伤特别敏感的SSM,利用其在心肌细胞边界的位置,并受益于小窝驱动的心脏保护信号,避免损伤扩散。