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Global Analysis of the Mitochondrial N-Proteome Identifies a Processing Peptidase Critical for Protein Stability

机译:线粒体N蛋白质组的全局分析确定了对蛋白质稳定性至关重要的加工肽酶

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Many mitochondrial proteins are synthesized with N-terminal presequences that are removed by specific peptidases. The N-termini of the mature proteins and thus peptidase cleavage sites have only been determined for a small fraction of mitochondrial proteins and yielded a controversial situation for the cleavage site specificity of the major mitochondrial processing peptidase (MPP). We report a global analysis of the N-proteome of yeast mitochondria, revealing the N-termini of 615 different proteins. Significantly more proteins than predicted contained cleavable presequences. We identified the intermediate cleaving peptidase Icp55, which removes an amino acid from a characteristic set of MPP-generated N-termini, solving the controversial situation of MPP specificity and suggesting that Icp55 converts instable intermediates into stable proteins. Our results suggest that Icp55 is critical for stabilization of the mitochondrial proteome and illustrate how the N-proteome can serve as rich source for a systematic analysis of mitochondrial protein targeting, cleavage and turnover.
机译:合成了许多线粒体蛋白,这些蛋白具有被特定肽酶去除的N端预序列。仅针对一小部分线粒体蛋白确定了成熟蛋白的N末端,从而确定了肽酶的切割位点,并且对主要线粒体加工肽酶(MPP)的切割位点特异性产生了争议。我们报告了酵母线粒体N蛋白的全球分析,揭示了615种不同蛋白的N末端。含有比预期多得多的蛋白质的可切割序列。我们鉴定了中间裂解肽酶Icp55,该酶从MPP产生的N-末端的特征集中去除氨基酸,解决了MPP特异性的争议情况,并暗示Icp55将不稳定的中间体转化为稳定的蛋白质。我们的结果表明,Icp55对线粒体蛋白质组的稳定至关重要,并说明了N蛋白组可以作为系统分析线粒体蛋白质靶向,切割和更新的丰富来源。

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