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SERCA2a tyrosine nitration coincides with impairments in maximal SERCA activity in left ventricles from tafazzin‐deficient mice

机译:tafazzin缺陷小鼠左心室中SERCA2a酪氨酸硝化与最大SERCA活性受损同时发生

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摘要

The sarco/endoplasmic reticulum Ca2+‐ATPase (SERCA) is imperative for normal cardiac function regulating both muscle relaxation and contractility. SERCA2a is the predominant isoform in cardiac muscles and is inhibited by phospholamban (PLN). Under conditions of oxidative stress, SERCA2a may also be impaired by tyrosine nitration. Tafazzin (Taz) is a mitochondrial‐specific transacylase that regulates mature cardiolipin (CL) formation, and its absence leads to mitochondrial dysfunction and excessive production of reactive oxygenitrogen species (ROS/RNS). In the present study, we examined SERCA function, SERCA2a tyrosine nitration, and PLN expression/phosphorylation in left ventricles (LV) obtained from young (3‐5 months) and old (10‐12 months) wild‐type (WT) and Taz knockdown (TazKD) male mice. These mice are a mouse model for Barth syndrome, which is characterized by mitochondrial dysfunction, excessive ROS/RNS production, and dilated cardiomyopathy (DCM). Here, we show that maximal SERCA activity was impaired in both young and old TazKD LV, a result that correlated with elevated SERCA2a tyrosine nitration. In addition PLN protein was decreased, and its phosphorylation was increased in TazKD LV compared with control, which suggests that PLN may not contribute to the impairments in SERCA function. These changes in expression and phosphorylation of PLN may be an adaptive response aimed to improve SERCA function in TazKD mice. Nonetheless, we demonstrate for the first time that SERCA function is impaired in LVs obtained from young and old TazKD mice likely due to elevated ROS/RNS production. Future studies should determine whether improving SERCA function can improve cardiac contractility and pathology in TazKD mice.
机译:肌/内质网Ca 2 + -ATPase(SERCA)对调节心肌舒张和收缩力的正常心脏功能至关重要。 SERCA2a是心肌中的主要同工型,并被磷酰苯丙胺(PLN)抑制。在氧化应激条件下,酪氨酸硝化还可能损害SERCA2a。 Tafazzin(Taz)是一种线粒体特异的转移酶,可调节成熟的心磷脂(CL)的形成,而缺乏则导致线粒体功能障碍和活性氧/氮物质(ROS / RNS)的过量产生。在本研究中,我们检查了从年轻(3-5个月)和大龄(10-12个月)野生型(WT)和Taz获得的左心室(LV)的SERCA功能,SERCA2a酪氨酸硝化和PLN表达/磷酸化击倒(Taz KD )雄性小鼠。这些小鼠是Barth综合征的小鼠模型,其特征在于线粒体功能障碍,过量的ROS / RNS产生和扩张型心肌病(DCM)。在这里,我们表明,无论年轻还是年老的Taz KD LV,最大的SERCA活性均受到损害,这与SERCA2a酪氨酸硝化增加有关。此外,与对照相比,Taz KD LV中PLN蛋白减少,其磷酸化增加,这表明PLN可能不参与SERCA功能的损害。 PLN表达和磷酸化的这些变化可能是一种适应性反应,旨在改善Taz KD 小鼠的SERCA功能。尽管如此,我们还是首次证明,从年轻和年老的Taz KD 小鼠获得的LV中,SERCA功能可能受到损害,这可能是由于ROS / RNS产生的增加所致。未来的研究应确定改善SERCA功能是否可以改善Taz KD 小鼠的心脏收缩能力和病理。

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