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首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >ATP-binding cassette A1 deficiency causes cardiolipin-driven mitochondrial dysfunction in podocytes
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ATP-binding cassette A1 deficiency causes cardiolipin-driven mitochondrial dysfunction in podocytes

机译:ATP 结合盒 A1 缺乏导致足细胞中心磷脂驱动的线粒体功能障碍

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Fibroblasts from patients with Tangier disease carrying ATP-binding cassette A1 (ABCA1) loss-of-function mutations are characterized by cardiolipin accumulation, a mitochondrial-specific phospholipid. Suppression of ABCA1 expression occurs in glomeruli from patients with diabetic kidney disease (DKD) and in human podocytes exposed to DKD sera collected prior to the development of DKD. We demonstrated that siRNA ABCA1 knockdown in podocytes led to reduced oxygen consumption capabilities associated with alterations in the oxidative phosphorylation (OXPHOS) complexes and with cardiolipin accumulation. Podocyte-specific deletion of Abca1 (Abca1(fl/fl)) rendered mice susceptible to DKD, and pharmacological induction of ABCA1 improved established DKD. This was not mediated by free cholesterol, as genetic deletion of sterol-o-acyltransferase-1 (SOAT1) in Abca1(fl/fl) mice was sufficient to cause free cholesterol accumulation but did not cause glomerular injury. Instead, cardiolipin mediates ABCA1-dependent susceptibility to podocyte injury, as inhibition of cardiolipin peroxidation with elamipretide improved DKD in vivo and prevented ABCA1-dependent podocyte injury in vitro and in vivo. Collectively, we describe a pathway definitively linking ABCA1 deficiency to cardiolipin-driven mitochondrial dysfunction. We demonstrated that this pathway is relevant to DKD and that ABCA1 inducers or inhibitors of cardiolipin peroxidation may each represent therapeutic strategies for the treatment of established DKD.
机译:丹吉尔病患者携带 ATP 结合盒 A1 (ABCA1) 功能丧失突变的成纤维细胞的特征是心磷脂积累,这是一种线粒体特异性磷脂。ABCA1 表达抑制发生在糖尿病肾病 (DKD) 患者的肾小球中,以及暴露于 DKD 发生前收集的 DKD 血清的人足细胞中。我们证明,足细胞中的 siRNA ABCA1 敲低导致与氧化磷酸化 (OXPHOS) 复合物改变和心磷脂积累相关的耗氧能力降低。Abca1 (Abca1(fl/fl)) 的足细胞特异性缺失使小鼠对 DKD 敏感,ABCA1 的药理诱导改善了已建立的 DKD。这不是由游离胆固醇介导的,因为Abca1(fl/fl)小鼠中甾醇-o-酰基转移酶-1(SOAT1)的基因缺失足以引起游离胆固醇积累,但不会引起肾小球损伤。相反,心磷脂介导 ABCA1 依赖性足细胞损伤的易感性,因为用 elamipretide 抑制心磷脂过氧化可改善体内 DKD,并在体外和体内预防 ABCA1 依赖性足细胞损伤。总的来说,我们描述了一种明确将 ABCA1 缺乏与心磷脂驱动的线粒体功能障碍联系起来的途径。我们证明该途径与 DKD 相关,并且 ABCA1 诱导剂或心磷脂过氧化抑制剂都可能代表治疗已确定的 DKD 的治疗策略。

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