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首页> 外文期刊>Molecular and Cellular Biology >Nuclear gene for mitochondrial leucyl-tRNA synthetase of Neurospora crassa: isolation, sequence, chromosomal mapping, and evidence that the leu-5 locus specifies structural information.
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Nuclear gene for mitochondrial leucyl-tRNA synthetase of Neurospora crassa: isolation, sequence, chromosomal mapping, and evidence that the leu-5 locus specifies structural information.

机译:粗糙神经孢菌线粒体亮氨酰-tRNA合成酶的核基因:分离,序列,染色体作图,并证明leu-5基因座指定了结构信息。

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We have isolated and characterized the nuclear gene for the mitochondrial leucyl-tRNA synthetase (LeuRS) of Neurospora crassa and have established that a defect in this structural gene is responsible for the leu-5 phenotype. We have purified mitochondrial LeuRS protein, determined its N-terminal sequence, and used this sequence information to identify and isolate a full-length genomic DNA clone. The 3.7-kilobase-pair region representing the structural gene and flanking regions has been sequenced. The 5' ends of the mRNA were mapped by S1 nuclease protection, and the 3' ends were determined from the sequence of cDNA clones. The gene contains a single short intron, 60 base pairs long. The methionine-initiated open reading frame specifies a 52-amino-acid mitochondrial targeting sequence followed by a 942-amino-acid protein. Restriction fragment length polymorphism analyses mapped the mitochondrial LeuRS structural gene to linkage group V, exactly where the leu-5 mutation had been mapped before. We show that the leu-5 strain has a defect in the structural gene for mitochondrial LeuRS by restoring growth under restrictive conditions for this strain after transformation with a wild-type copy of the mitochondrial LeuRS gene. We have cloned the mutant allele present in the leu-5 strain and identified the defect as being due to a Thr-to-Pro change in mitochondrial LeuRS. Finally, we have used immunoblotting to show that despite the apparent lack of mitochondrial LeuRS activity in leu-5 extracts, the leu-5 strain contains levels of mitochondrial LeuRS protein to similar to those of the wild-type strain.
机译:我们已经分离和表征了神经孢霉的线粒体亮氨酰-tRNA合成酶(LeuRS)的核基因,并确定该结构基因的缺陷与leu-5表型有关。我们已经纯化了线粒体LeuRS蛋白,确定了其N端序列,并使用此序列信息来鉴定和分离全长基因组DNA克隆。已对代表结构基因和侧翼区域的3.7碱基对区域进行了测序。 mRNA的5'末端通过S1核酸酶保护作图,并从cDNA克隆的序列确定3'末端。该基因包含一个短的内含子,长60个碱基对。蛋氨酸启动的开放阅读框指定了52个氨基酸的线粒体靶向序列,后接一个942个氨基酸的蛋白质。限制性片段长度多态性分析将线粒体LeuRS结构基因定位到连接群V,而该区域正是leu-5突变以前定位的位置。我们表明,leu-5菌株通过线粒体LeuRS基因的野生型拷贝转化后,在限制性条件下恢复该菌株的生长,从而在线粒体LeuRS的结构基因中存在缺陷。我们已经克隆了leu-5菌株中存在的突变等位基因,并确定该缺陷是由于线粒体LeuRS的Thr-Pro改变所致。最后,我们已使用免疫印迹法表明,尽管leu-5提取物中明显缺乏线粒体LeuRS活性,但leu-5菌株的线粒体LeuRS蛋白水平与野生型菌株相似。

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