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Dysfunctional cardiac mitochondrial bioenergetic lipidomic and signaling in a murine model of Barth syndrome

机译:Barth综合征鼠模型中功能异常的心脏线粒体生物能脂质体和信号传导

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摘要

Barth syndrome is a complex metabolic disorder caused by mutations in the mitochondrial transacylase tafazzin. Recently, an inducible tafazzin shRNA knockdown mouse model was generated to deconvolute the complex bioenergetic phenotype of this disease. To investigate the underlying cause of hemodynamic dysfunction in Barth syndrome, we interrogated the cardiac structural and signaling lipidome of this mouse model as well as its myocardial bioenergetic phenotype. A decrease in the distribution of cardiolipin molecular species and robust increases in monolysocardiolipin and dilysocardiolipin were demonstrated. Additionally, the contents of choline and ethanolamine glycerophospholipid molecular species containing precursors for lipid signaling at the sn-2 position were altered. Lipidomic analyses revealed specific dysregulation of HETEs and prostanoids, as well as oxidized linoleic and docosahexaenoic metabolites. Bioenergetic interrogation uncovered differential substrate utilization as well as decreases in Complex III and V activities. Transgenic expression of cardiolipin synthase or iPLA2γ ablation in tafazzin-deficient mice did not rescue the observed phenotype. These results underscore the complex nature of alterations in cardiolipin metabolism mediated by tafazzin loss of function. Collectively, we identified specific lipidomic, bioenergetic, and signaling alterations in a murine model that parallel those of Barth syndrome thereby providing novel insights into the pathophysiology of this debilitating disease.
机译:Barth综合征是一种复杂的代谢紊乱,是由线粒体转酰基酶他法嗪突变引起的。最近,产生了诱导型tafazzin shRNA敲除小鼠模型以解卷积该疾病的复杂生物能表型。为了调查Barth综合征血流动力学功能障碍的根本原因,我们询问了该小鼠模型的心脏结构和信号脂质组及其心肌生物能表型。证明了心磷脂分子种类分布的减少以及单溶心磷脂和双溶心磷脂的强劲增加。此外,胆碱和乙醇胺甘油磷脂分子物质的含量在sn-2位置上发生了脂质信号传导变化。脂质组学分析显示,HETE和类前列腺素以及氧化的亚油酸和二十二碳六烯酸代谢产物具有特定的失调。生物能询问揭示了底物利用率的差异以及复合物III和V活性的降低。 tafazzin缺陷小鼠心磷脂合酶或iPLA2γ消融的转基因表达不能挽救观察到的表型。这些结果强调了由他夫嗪功能丧失介导的心磷脂代谢改变的复杂性质。总的来说,我们在鼠模型中发现了与Barth综合征相似的脂质组学,生物能和信号传导改变,从而为这种衰弱性疾病的病理生理学提供了新的见解。

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