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首页> 外文期刊>Journal of Experimental Botany >Identification of cleavage sites and substrate proteins for two mitochondrial intermediate peptidases in Arabidopsis thaliana
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Identification of cleavage sites and substrate proteins for two mitochondrial intermediate peptidases in Arabidopsis thaliana

机译:拟南芥中两个线粒体中间肽酶的切割位点和底物蛋白的鉴定

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摘要

This study has identified two conserved mitochondrial peptidases in plants. Compared to other eukaryotes, AtICP55 has a conserved function and cleavage motif, and AtOCT1 has a completely novel cleavage motif.Most mitochondrial proteins contain an N-terminal targeting signal that is removed by specific proteases following import. In plant mitochondria, only mitochondrial processing peptidase (MPP) has been characterized to date. Therefore, we sought to determine the substrates and cleavage sites of the Arabidopsis thaliana homologues to the yeast Icp55 and Oct1 proteins, using the newly developed ChaFRADIC method for N-terminal protein sequencing. We identified 88 and seven putative substrates for Arabidopsis ICP55 and OCT1, respectively. It was determined that the Arabidopsis ICP55 contains an almost identical cleavage site to that of Icp55 from yeast. However, it can also remove a far greater range of amino acids. The OCT1 substrates from Arabidopsis displayed no consensus cleavage motif, and do not contain the classical -10R motif identified in other eukaryotes. Arabidopsis OCT1 can also cleave presequences independently, without the prior cleavage of MPP. It was concluded that while both OCT1 and ICP55 were probably acquired early on in the evolution of mitochondria, their substrate profiles and cleavage sites have either remained very similar or diverged completely.
机译:这项研究确定了植物中的两个保守的线粒体肽酶。与其他真核生物相比,AtICP55具有保守的功能和裂解基序,AtOCT1具有全新的裂解基序。大多数线粒体蛋白均含有N端靶向信号,该信号在导入后被特定的蛋白酶去除。迄今为止,在植物线粒体中,仅特征在于线粒体加工肽酶(MPP)。因此,我们寻求使用新开发的ChaFRADIC方法对N末端蛋白进行测序,确定拟南芥与酵母Icp55和Oct1蛋白的同源物的底物和切割位点。我们分别确定了拟南芥ICP55和OCT1的88个和7个推定底物。已确定拟南芥ICP55含有与酵母Icp55几乎相同的切割位点。但是,它也可以去除更大范围的氨基酸。拟南芥的OCT1底物未显示共有的裂解基序,并且不包含其他真核生物中鉴定的经典-10R基序。拟南芥OCT1还可以独立切割先序列,而无需事先切割MPP。结论是,虽然OCT1和ICP55都可能在线粒体进化的早期获得,但它们的底物谱和切割位点要么保持非常相似,要么完全分开。

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