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首页> 外文期刊>American Journal of Physiology >Loss of function of Sco1 and its interaction with cytochrome c oxidase.
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Loss of function of Sco1 and its interaction with cytochrome c oxidase.

机译:SCO1功能丧失及其与细胞色素C氧化酶的相互作用。

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Sco1 and Sco2 are mitochondrial copper-binding proteins involved in the biogenesis of the Cu(A) site in the cytochrome c oxidase (CcO) subunit Cox2 and in the maintenance of cellular copper homeostasis. Human Surf1 is a CcO assembly factor with an important but poorly characterized role in CcO biogenesis. Here, we analyzed the impact on CcO assembly and tissue copper levels of a G132S mutation in the juxtamembrane region of SCO1 metallochaperone associated with early onset hypertrophic cardiomyopathy, encephalopathy, hypotonia, and hepatopathy, assessed the total copper content of various SURF1 and SCO2-deficient tissues, and investigated the possible physical association between CcO and Sco1. The steady-state level of mutant Sco1 was severely decreased in the muscle mitochondria of the SCO1 patient, indicating compromised stability and thus loss of function of the protein. Unlike the wild-type variant, residual mutant Sco1 appeared to migrate exclusively in the monomeric form on blue native gels. Both the activity and content of CcO were reduced in the patient's muscle to approximately 10-20% of control values. SCO1-deficient mitochondria showed accumulation of two Cox2 subcomplexes, suggesting that Sco1 is very likely responsible for a different posttranslational aspect of Cox2 maturation than Sco2. Intriguingly, the various SURF1-deficient samples analyzed showed a tissue-specific copper deficiency similar to that of SCO-deficient samples, suggesting a role for Surf1 in copper homeostasis regulation. Finally, both blue native immunoblot analysis and coimmunoprecipitation revealed that a fraction of Sco1 physically associates with the CcO complex in human muscle mitochondria, suggesting a possible direct relationship between CcO and the regulation of cellular copper homeostasis.
机译:SCO1和SCO2是线粒体铜结合蛋白,参与细胞色素C氧化酶(CCO)亚基COX2中Cu(a)位点的生物发生,并在维持细胞铜稳态中。人体冲浪1是CCO组装因子,具有重要但在CCO生物发生中的作用。在这里,我们分析了与早期发病肥厚性心肌病,脑病,低醌和肝病相关的SCO1金属体中的CCO组装和组织铜水平的对CCO组装和组织铜水平的影响,评估了各种冲浪的总铜含量和SCO2缺陷的总铜含量组织,并研究了CCO和SCO1之间的可能的物理关联。在SCO1患者的肌肉线粒体中,突变体SCO1的稳态水平严重降低,表明损害稳定性,从而损失蛋白质的功能。与野生型变体不同,残留的突变体SCO1似乎仅在蓝色天然凝胶上仅以单体形式迁移。 CCO的活动和含量均在患者的肌肉中减少到约10-20%的控制值。 SCO1缺陷的线粒体显示两种COX2子拷贝的积累,表明SCO1非常可能对COX2成熟的不同后期性方面而不是SCO2。有趣的是,分析的各种Surf1缺陷样本显示出类似于基于微谱样品的组织特异性铜缺乏,表明Surf1在铜稳态调节中的作用。最后,Blue Native免疫斑分析和CoImMunopropipipitipitipitipectipipipipitipectapipipipipitipectipipipipitipectipipipipitipipipipitional的一部分与人肌肉线粒体中的CCO络合物物理相关,表明CCO与细胞铜稳态之间可能的直接关系。

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