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Mia40-dependent oxidation of cysteines in domain I of Ccs1 controls its distribution between mitochondria and the cytosol

机译:Mcs40依赖的半胱氨酸氧化的Ccs1域I控制线粒体和细胞质之间的分布。

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Superoxide dismutase 1 (Sod1) is an important antioxidative enzyme that converts superoxide anions to hydrogen peroxide and water. Active Sod1 is a homodimer containing one zinc ion, one copper ion, and one disulfide bond per subunit. Maturation of Sod1 depends on its copper chaperone (Ccs1). Sod1 and Ccs1 are dually localized proteins that reside in the cytosol and in the intermembrane space of mitochondria. The import of Ccs1 into mitochondria depends on the mitochondrial disulfide relay system. However, the exact mechanism of this import process has been unclear. In this study we detail the import and folding pathway of Ccs1 and characterize its interaction with the oxidoreductase of the mitochondrial disulfide relay Mia40. We identify cysteines at positions 27 and 64 in domain I of Ccs1 as critical for mitochondrial import and interaction with Mia40. On interaction with Mia40, these cysteines form a structural disulfide bond that stabilizes the overall fold of domain I. Although the cysteines are essential for the accumulation of functional Ccs1 in mitochondria, they are dispensable for the enzymatic activity of cytosolic Ccs1. We propose a model in which the Mia40-mediated oxidative folding of domain I controls the cellular distribution of Ccs1 and, consequently, active Sod1.
机译:超氧化物歧化酶1(Sod1)是一种重要的抗氧化酶,可将超氧化物阴离子转化为过氧化氢和水。活性Sod1是一种同二聚体,每个亚基包含一个锌离子,一个铜离子和一个二硫键。 Sod1的成熟度取决于其铜分子伴侣(Ccs1)。 Sod1和Ccs1是双重定位的蛋白质,存在于细胞质和线粒体的膜间空间中。 Ccs1导入线粒体取决于线粒体二硫键中继系统。但是,此导入过程的确切机制尚不清楚。在这项研究中,我们详细介绍了Ccs1的导入和折叠途径,并表征了其与线粒体二硫化物中继Mia40的氧化还原酶的相互作用。我们确定半胱氨酸在Ccs1的域I中的位置27和64对于线粒体导入和与Mia40的相互作用至关重要。与Mia40相互作用时,这些半胱氨酸形成一个结构化的二硫键,稳定了结构域I的整体折叠。尽管半胱氨酸对于线粒体中功能性Ccs1的积累是必不可少的,但对于胞质Ccs1的酶促活性却是不可缺少的。我们提出了一个模型,其中Mia40介导的结构域I的氧化折叠控制Ccs1的细胞分布,并因此控制活性Sod1。

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