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首页> 外文期刊>Plant physiology >INTERMEDIATE CLEAVAGE PEPTIDASE55 Modifies Enzyme Amino Termini and Alters Protein Stability in Arabidopsis Mitochondria
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INTERMEDIATE CLEAVAGE PEPTIDASE55 Modifies Enzyme Amino Termini and Alters Protein Stability in Arabidopsis Mitochondria

机译:中间裂解肽酶55修饰酶氨基末端,并改变拟南芥线粒体中的蛋白质稳定性。

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Precursor proteins containing mitochondrial peptide signals are cleaved after import by a mitochondrial processing peptidase. In yeast (Saccharomyces cerevisiae) and human (Homo sapiens), INTERMEDIATE CLEAVAGE PEPTIDASE55 (ICP55) plays a role in stabilizing mitochondrial proteins by the removal of single amino acids from mitochondrial processing peptidase-processed proteins. We have investigated the role of a metallopeptidase (At1g09300) from Arabidopsis (Arabidopsis thaliana) that has sequence similarity to yeast ICP55. We identified this protein in mitochondria by mass spectrometry and have studied its function in a transfer DNA insertion line (icp55). Monitoring of amino-terminal peptides showed that Arabidopsis ICP55 was responsible for the removal of single amino acids, and its action explained the -3 arginine processing motif of a number of mitochondrial proteins. ICP55 also removed single amino acids from mitochondrial proteins known to be cleaved at nonconserved arginine sites, a subset of mitochondrial proteins specific to plants. Faster mitochondrial protein degradation rates not only for ICP55 cleaved protein but also for some non-ICP55 cleaved proteins were observed in Arabidopsis mitochondrial samples isolated from icp55 than from the wild type, indicating that a complicated protease degradation network has been affected. The lower protein stability of isolated mitochondria and the lack of processing of target proteins in icp55 were complemented by transformation with the full-length ICP55. Analysis of in vitro degradation rates and protein turnover rates in vivo of specific proteins indicated that serine hydroxymethyltransferase was affected in icp55. The maturation of serine hydroxymethyltransferase by ICP55 is unusual, as it involves breaking an amino-terminal diserine that is not known as an ICP55 substrate in other organisms and that is typically considered a sequence that stabilizes rather than destabilizes a protein.
机译:含有线粒体肽信号的前体蛋白在导入后被线粒体加工肽酶裂解。在酵母(Saccharomyces cerevisiae)和人(Homo sapiens)中,中间裂解肽酶55(ICP55)通过从线粒体加工肽酶加工的蛋白质中去除单个氨基酸来稳定线粒体蛋白质。我们研究了拟南芥(Arabidopsis thaliana)的金属肽酶(At1g09300)的作用,该序列与酵母ICP55具有序列相似性。我们通过质谱鉴定了线粒体中的这种蛋白质,并研究了其在转移DNA插入系(icp55)中的功能。氨基末端肽的监测表明,拟南芥ICP55负责去除单个氨基酸,其作用解释了许多线粒体蛋白的-3精氨酸加工基序。 ICP55还从已知会在非保守精氨酸位点切割的线粒体蛋白质中去除单个氨基酸,后者是植物特有的线粒体蛋白质的一个子集。在从icp55分离的拟南芥线粒体样品中,不仅从ICP55裂解的蛋白质到某些非ICP55裂解的蛋白质,线粒体蛋白质的降解速率都比从野生型更快,表明复杂的蛋白酶降解网络已受到影响。分离的线粒体的较低的蛋白稳定性和icp55中缺乏目标蛋白的加工,可以通过全长ICP55的转化来弥补。对特定蛋白的体外降解率和体内蛋白周转率的分析表明,丝氨酸羟甲基转移酶在icp55中受到影响。 ICP55丝氨酸羟甲基转移酶的成熟是不寻常的,因为它涉及破坏氨基末端二丝氨酸,而在其他生物中,这是不知名的ICP55底物,通常被认为是稳定而不是使蛋白质不稳定的序列。

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