线粒体tRNA基因进化及其与遗传密码关系的评价。

R J Cedergren
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引用次数: 14

摘要

线粒体(mt) tRNA的大量序列数据首次提供了评估该细胞器中tRNA基因进化的机会。这些基因结构的推论与tRNA基因在其他细胞系统中的进化和遗传密码的起源有关。与叶绿体tRNA结构的原核性质相反,Mt tRNA目前还不能明确地与原核或真核tRNA相关,这可能是因为线粒体中的突变率更高。具有相同反密码子和功能的真菌mt trna通常相似到足以被认为是同源的。对同一线粒体中包含的所有mt tRNA序列的比较表明,一些tRNA起源于一个原型基因的复制,该基因在分化后导致tRNA具有不同的氨基酸特异性。异常的mt遗传密码,虽然公认允许一种更简单的解码机制,但对于确定线粒体的起源是早于原核生物还是来源于真核生物来说是没有用的,因为遗传密码即使在线粒体之间也是可变的。mt遗传密码的变异导致对原始密码的性质及其与目前“通用”密码的关系的猜测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An evaluation of mitochondrial tRNA gene evolution and its relation to the genetic code.

Extensive sequence data on mitochondrial (mt) tRNAs give for the first time an opportunity to evaluate tRNA gene evolution in this organelle. Deductions from these gene structures relate to the evolution of tRNA genes in other cellular systems and to the origin of the genetic code. Mt tRNAs, in contrast to the prokaryotic nature of chloroplastic tRNA structure, can not at the present time be definitely related to either prokaryotic or eukaryotic tRNAs, probably because of a higher mutation rate in mitochondria. Fungal mt tRNAs having the same anticodon and function are generally similar enough to be considered homologous. Comparisons af all mt tRNA sequences contained in the same mitochondrion indicate that some tRNAs originated by duplication of a prototypic gene which, after divergence, led to tRNAs having different amino acid specificities. The deviant mt genetic code, although admittedly permitting a simpler decoding mechanism, is not useful in determining whether the origin of mitochondria had preceded or was derived from prokaryotes or eukaryotes, since the genetic code is variable even among mitochondria. Variants of the mt genetic code lead to speculation on the nature of the primordial code and its relation to the present "universal" code.

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