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酿酒酵母中的线粒体基因表达。II. 野生型和呼吸缺陷型突变细胞分离线粒体中的翻译保真度。

Mitochondrial gene expression in saccharomyces cerevisiae. II. Fidelity of translation in isolated mitochondria from wild type and respiratory-deficient mutant cells.

作者信息

McKee E E, McEwen J E, Poyton R O

出版信息

J Biol Chem. 1984 Jul 25;259(14):9332-8.

PMID:6086633
Abstract

The fidelity of mitochondrial translation has been examined in isolated yeast mitochondria incubated in an optimized protein-synthesizing medium (McKee, E. E., and Poyton, R. O., (1984) J. Biol. Chem. 259, 9320-9331). These studies have revealed: that isolated mitochondria synthesize bona fide mitochondrial gene products which are identical in kind and relative amounts to those synthesized in vivo; that mitochondria isolated from both mitochondrial mit- mutants and nuclear Pet mutants, which retain the capacity for mitochondrial protein synthesis, produce a mutant pattern of mitochondrial gene products which is similar to that produced in vivo; and that isolated mitochondria synthesize up to 7% of their protein mass in vitro at a rate of about one polypeptide bond/polypeptide chain/s. These studies also reveal that isolated wild type yeast mitochondria are competent in all steps in mitochondrial translation, including initiation. Using pactamycin as a specific inhibitor of translational initiation we have demonstrated that polypeptide chain initiation continues throughout a 60-min incubation period. By using this in vitro system to calculate the stoichiometry of synthesis of the major proteins coded by yeast mitochondrial DNA we have found that the var1 polypeptide is synthesized at a level which is significantly lower than all other mitochondrial gene products and that cytochrome c oxidase subunits I, II, and III and ATPase subunit 9 are synthesized in nearly equimolar amounts. These results suggest that the synthesis of these four gene products is controlled coordinately.

摘要

在线粒体翻译保真度的研究中,人们在优化的蛋白质合成培养基中孵育分离得到的酵母线粒体(麦基,E.E.,和波伊顿,R.O.,(1984年)《生物化学杂志》259卷,9320 - 9331页)。这些研究揭示了:分离得到的线粒体能够合成真正的线粒体基因产物,其种类和相对含量与体内合成的产物相同;从线粒体mit - 突变体和核Pet突变体中分离得到的线粒体,它们保留了线粒体蛋白质合成能力,会产生与体内相似的线粒体基因产物突变模式;分离得到的线粒体在体外能够合成高达其蛋白质总量7%的蛋白质,合成速率约为一个多肽键/多肽链/秒。这些研究还表明,分离得到的野生型酵母线粒体在包括起始步骤在内的线粒体翻译的所有步骤中都具有活性。使用放线菌酮作为翻译起始的特异性抑制剂,我们证明了多肽链起始在60分钟的孵育期内持续进行。通过使用这个体外系统来计算酵母线粒体DNA编码的主要蛋白质的合成化学计量,我们发现var1多肽的合成水平明显低于所有其他线粒体基因产物,并且细胞色素c氧化酶亚基I、II和III以及ATP酶亚基9以几乎等摩尔的量合成。这些结果表明这四种基因产物的合成是协同控制的。

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