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基于黑腹果蝇线粒体tRNA序列的密码子阅读模式:动物线粒体中独特的摆动规则。

Codon reading patterns in Drosophila melanogaster mitochondria based on their tRNA sequences: a unique wobble rule in animal mitochondria.

作者信息

Tomita K, Ueda T, Ishiwa S, Crain P F, McCloskey J A, Watanabe K

机构信息

Department of Chemistry and Biotechnology, Graduate School of Engineering, University of Tokyo, Bunkyo-ku, Tokyo 113, Japan.

出版信息

Nucleic Acids Res. 1999 Nov 1;27(21):4291-7. doi: 10.1093/nar/27.21.4291.

Abstract

Mitochondrial (mt) tRNA(Trp), tRNA(Ile), tRNA(Met), tRNA(Ser)GCU, tRNA(Asn)and tRNA(Lys)were purified from Drosophila melanogaster (fruit fly) and their nucleotide sequences were determined. tRNA(Lys)corresponding to both AAA and AAG lysine codons was found to contain the anticodon CUU, C34 at the wobble position being unmodified. tRNA(Met)corresponding to both AUA and AUG methionine codons was found to contain 5-formylcytidine (f(5)C) at the wobble position, although the extent of modification is partial. These results suggest that both C and f(5)C as the wobble bases at the anticodon first position (position 34) can recognize A at the codon third position (position 3) in the fruit fly mt translation system. tRNA(Ser)GCU corresponding to AGU, AGC and AGA serine codons was found to contain unmodified G at the anticodon wobble position, suggesting the utilization of an unconventional G34-A3 base pair during translation. When these tRNA anticodon sequences are compared with those of other animal counterparts, it is concluded that either unmodified C or G at the wobble position can recognize A at the codon third position and that modification from A to t(6)A at position 37, 3'-adjacent to the anticodon, seems to be important for tRNA possessing C34 to recognize A3 in the mRNA in the fruit fly mt translation system.

摘要

从黑腹果蝇(果蝇)中纯化出线粒体(mt)的tRNA(Trp)、tRNA(Ile)、tRNA(Met)、tRNA(Ser)GCU、tRNA(Asn)和tRNA(Lys),并测定了它们的核苷酸序列。发现对应于AAA和AAG赖氨酸密码子的tRNA(Lys)含有反密码子CUU,摆动位置的C34未被修饰。发现对应于AUA和AUG甲硫氨酸密码子的tRNA(Met)在摆动位置含有5-甲酰胞苷(f(5)C),尽管修饰程度不完全。这些结果表明,在果蝇线粒体翻译系统中,反密码子第一位(第34位)的C和f(5)C作为摆动碱基都可以识别密码子第三位(第3位)的A。发现对应于AGU、AGC和AGA丝氨酸密码子的tRNA(Ser)GCU在反密码子摆动位置含有未修饰的G,这表明在翻译过程中利用了非常规的G34-A3碱基对。当将这些tRNA反密码子序列与其他动物的对应序列进行比较时,可以得出结论,摆动位置未修饰的C或G都可以识别密码子第三位的A,并且在反密码子3'相邻的第37位从A修饰为t(6)A似乎对于果蝇线粒体翻译系统中具有C34的tRNA识别mRNA中的A3很重要。

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