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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Cytoplasmic and mitochondrial forms of yeast adenylate kinase 2 are N-acetylated
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Cytoplasmic and mitochondrial forms of yeast adenylate kinase 2 are N-acetylated

机译:酵母腺苷酸激酶2的细胞质和线粒体形式被N-乙酰化

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Yeast major adenylate kinase (Aky2p), encoded by a single gene, occurs in two subcellular compartments, mitochondria and cytoplasm. Only 6–8% of the protein which has no cleavable presequence is imported into the organelle (Bandlow et al. (1988) Eur. J. Biochem. 178, 451–457). In the wild type two AKY2-derived signals (a major and a minor one) were detected by a monospecific antibody after two-dimensional gel electrophoresis and Western blotting. The signals reflected identical electrophoretic mobilities and were absent from an AKY2-disrupted strain suggesting that they were due to differently modified forms of Aky2p. Two similar signals were found in a mutant defective in protein N-acetylation, however, the pI values of both spots were shifted towards alkaline pH by one charge. This indicated that both forms of Aky2p were N-acetylated in the wild type and that their charge difference was not caused by incomplete N-acetylation. This observation furthermore suggested that, in the wild type, two different modifications exist one of which is N-acetylation. The second modification remains unidentified. We analysed the influence of protein N-acetylation on mitochondrial import. Both versions of Aky2p occurred in the cytoplasm and in mitochondria. Their proportion was unchanged in the N-acetylation mutant showing that neither modification affected the efficiency of import of adenylate kinase into mitochondria. It is discussed that N-acetylation occurs during or immediately after translation in the cytoplasm so that import of adenylate kinase may ensue co-translationally.
机译:单个基因编码的酵母主要腺苷酸激酶(Aky2p)出现在两个亚细胞区室,线粒体和细胞质中。没有可裂解序列的蛋白质中只有6–8%被导入细胞器(Bandlow等(1988)Eur。J. Biochem。178,451–457)。在野生型中,二维凝胶电泳和Western印迹后,通过单特异性抗体检测到两个AKY2衍生信号(一个主要信号和一个次要信号)。该信号反映了相同的电泳迁移率,并且在AKY2干扰菌株中不存在,这表明它们是由于Aky2p的修饰形式不同而引起的。在蛋白质N-乙酰化缺陷的突变体中发现了两个类似的信号,但是,两个点的pI值通过一次电荷就向碱性pH值移动。这表明两种形式的Aky2p在野生型中均被N-乙酰化,并且它们的电荷差异不是由不完全的N-乙酰化引起的。该观察结果进一步表明,在野生型中,存在两种不同的修饰,其中之一是N-乙酰化。第二修改仍未确定。我们分析了蛋白质N-乙酰化对线粒体导入的影响。 Aky2p的两个版本都出现在细胞质和线粒体中。在N-乙酰化突变体中,它们的比例没有变化,表明这两种修饰均不影响腺苷酸激酶导入线粒体的效率。讨论了N-乙酰化发生在细胞质中的翻译过程中或翻译后,因此腺苷酸激酶的导入可以在共翻译中发生。

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