首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Proteolytic cleavage by the inner membrane peptidase (IMP) complex or Oct1 peptidase controls the localization of the yeast peroxiredoxin Prx1 to distinct mitochondrial compartments
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Proteolytic cleavage by the inner membrane peptidase (IMP) complex or Oct1 peptidase controls the localization of the yeast peroxiredoxin Prx1 to distinct mitochondrial compartments

机译:内膜肽酶(IMP)复合物或Oct1肽酶的蛋白水解切割控制酵母过氧化物酶Prx1在不同线粒体区室的定位

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摘要

Yeast Prx1 is a mitochondrial 1-Cys peroxiredoxin that catalyzes the reduction of endogenously generated H2O2. Prx1 is synthesized on cytosolic ribosomes as a preprotein with a cleavable N-terminal presequence that is the mitochondrial targeting signal, but the mechanisms underlying Prx1 distribution to distinct mitochondrial subcompartments are unknown. Here, we provide direct evidence of the following dual mitochondrial localization of Prx1: a soluble form in the intermembrane space and a form in the matrix weakly associated with the inner mitochondrial membrane. We show that Prx1 sorting into the intermembrane space likely involves the release of the protein precursor within the lipid bilayer of the inner membrane, followed by cleavage by the inner membrane peptidase. We also found that during its import into the matrix compartment, Prx1 is sequentially cleaved by mitochondrial processing peptidase and then by octapeptidyl aminopeptidase 1 (Oct1). Oct1 cleaved eight amino acid residues from the N-terminal region of Prx1 inside the matrix, without interfering with its peroxidase activity in vitro. Remarkably, the processing of peroxiredoxin (Prx) proteins by Oct1 appears to be an evolutionarily conserved process because yeast Oct1 could cleave the human mitochondrial peroxiredoxin Prx3 when expressed in Saccharomyces cerevisiae. Altogether, the processing of peroxiredoxins by Imp2 or Oct1 likely represents systems that control the localization of Prxs into distinct compartments and thereby contribute to various mitochondrial redox processes.
机译:酵母Prx1是一种线粒体1-Cys过氧化物酶,可催化内源性H2O2的还原。 Prx1是作为具有可切割N端前序(即线粒体靶向信号)的前体蛋白在胞质核糖体上合成的,但Prx1分布到不同线粒体亚区室的机制尚不清楚。在这里,我们提供以下Prx1双重线粒体定位的直接证据:膜间空间中的可溶形式和与线粒体内膜弱相关的基质形式。我们显示,进入膜间空间的Prx1可能涉及内膜脂质双层内蛋白质前体的释放,然后被内膜肽酶切割。我们还发现,在其导入基质区室的过程中,Prx1被线粒体加工肽酶然后被八肽基氨基肽酶1(Oct1)顺序切割。 Oct1从基质内部Prx1的N末端区域切割了8个氨基酸残基,而在体外不干扰其过氧化物酶活性。值得注意的是,Oct1处理过氧化物酶(Prx)蛋白似乎是一个进化保守的过程,因为酵母Oct1可以在酿酒酵母中表达时切割人线粒体过氧化物酶Prx3。总而言之,Imp2或Oct1对过氧化物氧还蛋白的处理可能代表了控制Prxs进入不同区室的系统,从而有助于各种线粒体氧化还原过程。

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