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首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Sarcalumenin plays a critical role in age-related cardiac dysfunction due to decreases in SERCA2a expression and activity
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Sarcalumenin plays a critical role in age-related cardiac dysfunction due to decreases in SERCA2a expression and activity

机译:Sarcalumenin由于SERCA2a表达和活性降低而在与年龄相关的心脏功能障碍中起关键作用

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摘要

Impaired Ca 2+ reuptake into the sarcoplasmic reticulum (SR) underlies a primary pathogenesis of heart failure in the aging heart. Sarcalumenin (SAR), a Ca 2+-binding glycoprotein located in the longitudinal SR, regulates Ca 2+ reuptake by interacting with SR Ca 2+-ATPase (SERCA). Here we found that the expression levels of both SAR and SERCA2 proteins were significantly downregulated in senescent wild-type mice (18-month old) and that downregulation of SAR protein preceded downregulation of SERCA2 protein. The downregulation of SERCA2 protein was greater in senescent SARKO mice than in age-matched senescent wild-type mice, which was at least in part due to progressive degradation of SERCA2 protein in SARKO mice. Senescent SARKO mice exhibited typical findings of heart failure such as increased sympathetic activity, impaired exercise tolerance, and upregulation of biomarkers of cardiac stress. Consequently, cardiac function was progressively decreased in senescent SARKO. We also found that the expression levels of endoplasmic reticulum (ER) stress-related genes such as x-box binding protein 1 (XBP1) were significantly increased in senescent SARKO mice, indicating that senescent SARKO mice exhibited ER stress. Thus we uncovered the important role of SAR in maintaining Ca 2+ transport activity of SERCA2a and cardiac function in the senescent population.
机译:Ca 2+再摄取进入肌浆网(SR)的受损是衰老心脏衰竭的主​​要发病机理。 Sarcalumenin(SAR)是位于纵向SR中的Ca 2+结合糖蛋白,通过与SR Ca 2 + -ATPase(SERCA)相互作用来调节Ca 2+的再摄取。在这里,我们发现SAR和SERCA2蛋白的表达水平在衰老的野生型小鼠(18个月大)中均显着下调,并且SAR蛋白的下调先于SERCA2蛋白的下调。 SERCA2蛋白的下调在衰老的SARKO小鼠中比在年龄匹配的衰老的野生型小鼠中更大,这至少部分归因于SARKO小鼠中SERCA2蛋白的逐步降解。衰老的SARKO小鼠表现出典型的心力衰竭发现,例如交感神经活动增强,运动耐力受损和心脏应激生物标志物上调。因此,衰老SARKO中的心脏功能逐渐降低。我们还发现内质网(ER)应激相关基因如x-box结合蛋白1(XBP1)的表达水平在衰老SARKO小鼠中显着增加,表明衰老SARKO小鼠表现出ER应激。因此,我们发现了SAR在维持衰老人群中SERCA2a的Ca 2+转运活性和心脏功能方面的重要作用。

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