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首页> 外文期刊>Disease models & mechanisms: DMM >Early cerebellar deficits in mitochondrial biogenesis and respiratory chain complexes in the KIKO mouse model of Friedreich ataxia
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Early cerebellar deficits in mitochondrial biogenesis and respiratory chain complexes in the KIKO mouse model of Friedreich ataxia

机译:Friedreich共济失调的KIKO小鼠模型中线粒体生物发生和呼吸链复合体的小脑早期缺陷

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Friedreich ataxia (FRDA), the most common recessive inherited ataxia, results from deficiency of frataxin, a small mitochondrial protein crucial for iron-sulphur cluster formation and ATP production. Frataxin deficiency is associated with mitochondrial dysfunction in FRDA patients and animal models; however, early mitochondrial pathology in FRDA cerebellum remains elusive. Using frataxin knock-in/knockout (KIKO) mice and KIKO mice carrying the mitoDendra transgene, we show early cerebellar deficits in mitochondrial biogenesis and respiratory chain complexes in this FRDA model. At asymptomatic stages, the levels of PGC-1α (PPARGC1A), the mitochondrial biogenesis master regulator, are significantly decreased in cerebellar homogenates of KIKO mice compared with age-matched controls. Similarly, the levels of the PGC-1α downstream effectors, NRF1 and Tfam, are significantly decreased, suggesting early impaired cerebellar mitochondrial biogenesis pathways. Early mitochondrial deficiency is further supported by significant reduction of the mitochondrial markers GRP75 (HSPA9) and mitofusin-1 in the cerebellar cortex. Moreover, the numbers of Dendra-labeled mitochondria are significantly decreased in cerebellar cortex, confirming asymptomatic cerebellar mitochondrial biogenesis deficits. Functionally, complex I and II enzyme activities are significantly reduced in isolated mitochondria and tissue homogenates from asymptomatic KIKO cerebella. Structurally, levels of the complex I core subunit NUDFB8 and complex II subunits SDHA and SDHB are significantly lower than those in age-matched controls. These results demonstrate complex I and II deficiency in KIKO cerebellum, consistent with defects identified in FRDA patient tissues. Thus, our findings identify early cerebellar mitochondrial biogenesis deficits as a potential mediator of cerebellar dysfunction and ataxia, thereby providing a potential therapeutic target for early intervention of FRDA.
机译:Friedreich共济失调(FRDA)是最常见的隐性遗传共济失调,其起因于frataxin(一种对铁硫簇形成和ATP产生至关重要的线粒体蛋白)的缺乏。 Frataxin缺乏与FRDA患者和动物模型中的线粒体功能障碍有关。然而,FRDA小脑的早期线粒体病理仍然难以捉摸。使用frataxin敲入/敲除(KIKO)小鼠和携带mitoDendra转基因的KIKO小鼠,我们在此FRDA模型中显示了线粒体生物发生和呼吸链复合物中的小脑早期缺陷。在无症状阶段,与年龄匹配的对照组相比,KIKO小鼠的小脑匀浆中PGC-1α(PPARGC1A)(线粒体生物发生主调节剂)的水平显着降低。同样,PGC-1α下游效应子NRF1和Tfam的水平也显着降低,表明小脑线粒体生物发生途径早期受损。小脑皮质中线粒体标志物GRP75(HSPA9)和线粒体融合蛋白-1的显着降低进一步支持了早期线粒体缺乏。此外,小脑皮层中Dendra标记的线粒体数量明显减少,证实了无症状的小脑线粒体生物发生缺陷。在功能上,复杂的I和II酶活性在无症状KIKO小脑的分离的线粒体和组织匀浆中显着降低。在结构上,复杂的I核心亚基NUDFB8和复杂的II亚基SDHA和SDHB的水平显着低于年龄匹配的对照组。这些结果表明,KIKO小脑中复杂的I和II缺乏症与FRDA患者组织中鉴定出的缺陷一致。因此,我们的发现将早期小脑线粒体生物发生缺陷鉴定为小脑功能障碍和共济失调的潜在介体,从而为FRDA的早期干预提供了潜在的治疗靶点。

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