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单次编辑事件是高效加工马铃薯线粒体苯丙氨酸tRNA的前提条件。

A single editing event is a prerequisite for efficient processing of potato mitochondrial phenylalanine tRNA.

作者信息

Marechal-Drouard L, Cosset A, Remacle C, Ramamonjisoa D, Dietrich A

机构信息

Institut de Biologie Moléculaire des Plantes du Centre National de la Recherche Scientifique, Université Louis Pasteur, Strasbourg, France.

出版信息

Mol Cell Biol. 1996 Jul;16(7):3504-10. doi: 10.1128/MCB.16.7.3504.

Abstract

In bean, potato, and Oenothera plants, the C encoded at position 4 (C4) in the mitochondrial tRNA Phe GAA gene is converted into a U in the mature tRNA. This nucleotide change corrects a mismatched C4-A69 base pair which appears when the gene sequence is folded into the cloverleaf structure. C-to-U conversions constitute the most common editing events occurring in plant mitochondrial mRNAs. While most of these conversions introduce changes in the amino acids specified by the mRNA and appear to be essential for the synthesis of functional proteins in plant mitochondria, the putative role of mitochondrial tRNA editing has not yet been defined. Since the edited form of the tRNA has the correct secondary and tertiary structures compared with the nonedited form, the two main processes which might be affected by a nucleotide conversion are aminoacylation and maturation. To test these possibilities, we determined the aminoacylation properties of unedited and edited potato mitochondrial tRNAPhe in vitro transcripts, as well as the processing efficiency of in vitro-synthesized potato mitochondrial tRNAPhe precursors. Reverse transcription-PCR amplification of natural precursors followed by cDNA sequencing was also used to investigate the influence of editing on processing. Our results show that C-to-U conversion at position 4 in the potato mitochondrial tRNA Phe GAA is not required for aminoacylation with phenylalanine but is likely to he essential for efficient processing of this tRNA.

摘要

在菜豆、马铃薯和月见草属植物中,线粒体苯丙氨酸tRNA GAA基因第4位编码的C(C4)在成熟tRNA中转变为U。这种核苷酸变化纠正了基因序列折叠成三叶草结构时出现的错配C4-A69碱基对。C到U的转变是植物线粒体mRNA中最常见的编辑事件。虽然这些转变大多会导致mRNA所指定的氨基酸发生变化,并且似乎对植物线粒体中功能蛋白的合成至关重要,但线粒体tRNA编辑的假定作用尚未明确。由于与未编辑形式相比,编辑后的tRNA具有正确的二级和三级结构,核苷酸转变可能影响的两个主要过程是氨酰化和成熟。为了验证这些可能性,我们测定了未编辑和编辑后的马铃薯线粒体苯丙氨酸tRNA体外转录本的氨酰化特性,以及体外合成的马铃薯线粒体苯丙氨酸tRNA前体的加工效率。还通过对天然前体进行逆转录-聚合酶链反应扩增,随后进行cDNA测序,来研究编辑对加工的影响。我们的结果表明,马铃薯线粒体苯丙氨酸tRNA GAA第4位的C到U转变对于苯丙氨酸氨酰化不是必需的,但可能对该tRNA的有效加工至关重要。

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