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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >A Personalized Model of COQ2 Nephropathy Rescued by the Wild-Type COQ2 Allele or Dietary Coenzyme Q(10) Supplementation
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A Personalized Model of COQ2 Nephropathy Rescued by the Wild-Type COQ2 Allele or Dietary Coenzyme Q(10) Supplementation

机译:由野生型COQ2等位基因或膳食辅酶Q(10)补充源于野生型COQ2肾病的个性化模型

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Clinical studies have identified patients with nephrotic syndrome caused bymutations in genes involved in the biosynthesis of coenzyme Q(10) (CoQ(10)), a lipid component of the mitochondrial electron transport chain and an important antioxidant. However, the cellular mechanisms through which these mutations induce podocyte injury remain obscure. Here, we exploited the striking similarities between Drosophila nephrocytes and human podocytes to develop a Drosophila model of these renal diseases, and performed a systematic in vivo analysis assessing the role of CoQ(10) pathway genes in renal function. Nephrocyte-specific silencing of Coq2, Coq6, and Coq8, which are genes involved in the CoQ(10) pathway that have been associatedwith genetic nephrotic syndrome in humans, induced dramatic adverse changes in these cells. In particular, silencing of Coq2 led to an abnormal localization of slit diaphragms, collapse of lacunar channels, and more dysmorphic mitochondria. In addition, Coq2-deficient nephrocytes showed elevated levels of autophagy and mitophagy, increased levels of reactive oxygen species, and increased sensitivity to oxidative stress. Dietary supplementationwithCoQ(10) at least partially rescued these defects. Furthermore, expressing the wild-type human COQ2 gene specifically in nephrocytes rescued the defective protein uptake, but expressing the mutant allele derived from a patient with COQ2 nephropathy did not. We conclude that transgenic Drosophila lines carryingmutations in the CoQ(10) pathway genes are clinically relevant models with which to explore the pathogenesis of podocyte injury and could serve as a new platform to test novel therapeutic approaches.
机译:临床研究已鉴定肾功能综合征患者在参与辅酶Q(10)(CoQ(10))的生物合成中的基因中引起的患者,线粒体电子传输链的脂质组分和重要的抗氧化剂。然而,这些突变诱导泛细胞损伤的细胞机制仍然模糊不清。在这里,我们利用了果蝇肾腺细胞和人龟段之间的醒目相似性,以开发这些肾病的果蝇模型,并进行了系统的体内分析,评估了CoQ(10)途径基因在肾功能中的作用。 CoQ2,CoQ6和CoQ8的肾细胞特异性沉默,其是涉及人类遗传肾病综合征的CoQ(10)途径中涉及的基因,诱导这些细胞的显着不利变化。特别地,CoQ2的沉默导致狭缝膜片的异常定位,裂缝频道塌陷,以及更令人厌倦的线粒体。此外,CoQ2缺乏肾腺细胞显示出升高的自噬和水道水平,增加的活性氧物质水平,以及对氧化应激的敏感性增加。膳食补充剂(10)至少部分救出这些缺陷。此外,特异性地在肾细胞中表达野生型人CoQ2基因拯救了缺陷的蛋白质摄取,但表达衍生自Coq2肾病的患者的突变等位基因没有。我们得出结论,CoQ(10)途径基因中的转基因果蝇线携带患者是临床相关模型,用于探讨泛细胞损伤的发病机制,可以作为测试新的治疗方法的新平台。

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