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酵母线粒体DNA可指定用于19种氨基酸的tRNA。tRNA基因的缺失定位。

Yeast mitochondrial DNA specifies tRNA for 19 amino acids. Deletion mapping of the tRNA genes.

作者信息

Martin N C, Rabinowitz M, Fukuhara H

出版信息

Biochemistry. 1977 Oct 18;16(21):4672-7. doi: 10.1021/bi00640a022.

Abstract

We have previously identified 14 aminoacyl tRNAs that are specified by yeast mitochondrial DNA (mtDNA). We now report four more amino acids (Arg, Cys, Trp, Thr) that acylate tRNAs which hybridize with mtDNA. Furthermore one of the two mitochondrial tRNAs that we had earlier demonstrated to be directly charged with glutamic acid responds to glutamine but not to glutamic acid codons. Thus Gln-tRNAGln appears to be formed by transamidation of a missense intermediate Glu-tRNAGln. This brings to 19 the number of amino acids which have corresponding tRNAs specified by mtDNA. Only tRNAAsn has not yet been shown to be a mtDNA transcript. We have also mapped the genes for the newly identified mitochondrial tRNAs, as well as several others that were previously identified but unmapped, by hybridization to the mtDNA of a series of petite deletion mutants. We now have ordered 20 mitochondrial tRNA genes (including two methionyl-tRNAs) wtih respect to the antibiotic resistance markers chloramphenicol (CR), erythromycin (ER), paromomycin (PR), and oligomycin I and II (ORI, ORII). Eighteen tRNA genes map between the C and E resistance markers. Only the serinyl-tRNA and glutamyl-tRNA genes are localized near the OI and OII resistance markers.

摘要

我们之前已鉴定出14种由酵母线粒体DNA(mtDNA)所编码的氨酰tRNA。我们现在报告又有4种氨基酸(精氨酸、半胱氨酸、色氨酸、苏氨酸)可使与mtDNA杂交的tRNA发生氨酰化。此外,我们之前证明可直接被谷氨酸氨酰化的两种线粒体tRNA之一,对谷氨酰胺密码子有反应,而对谷氨酸密码子无反应。因此,谷氨酰胺-tRNA^Gln似乎是由错义中间体谷氨酸-tRNA^Gln的转酰胺作用形成的。这样一来,由mtDNA所编码的具有相应tRNA的氨基酸数量就达到了19种。只有天冬酰胺tRNA尚未被证明是mtDNA的转录产物。我们还通过与一系列小缺失突变体的mtDNA杂交,对新鉴定的线粒体tRNA以及其他一些之前已鉴定但未定位的tRNA的基因进行了定位。我们现在已根据氯霉素(CR)、红霉素(ER)、巴龙霉素(PR)以及寡霉素I和II(ORI、ORII)等抗生素抗性标记,对20个线粒体tRNA基因(包括两个甲硫氨酰-tRNA)进行了排序。18个tRNA基因位于C和E抗性标记之间。只有丝氨酰-tRNA和谷氨酰-tRNA基因位于OI和OII抗性标记附近。

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