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Evidence that two present-day components needed for the genetic code appeared after nucleated cells separated from eubacteria.

机译:有核细胞与真细菌分离后,出现了遗传密码所需的两个当今组成部分的证据。

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摘要

The trinucleotide/amino acid relationships of the present-day genetic code are established by the amino-acylation reactions of tRNA synthetases, whereby each of 20 specific amino acids is attached to its cognate tRNAs, which bear anticodon trinucleotides. Because of its universality, the appearance of the modern genetic code is thought to predate the separation of prokaryotic and eukaryotic organisms in the universal phylogenetic tree. In the light of new sequence information, we present here a phylogenetic analysis that shows an unusual picture for tyrosyl- and tryptophanyl-tRNA synthetases. Ij particular, the eukaryotic tyrosyl- and tryptophanyl-tRNA synthetases are more related to each other than to their respective prokaryotic counterparts. In contrast, each of the other 18 eukaryotic synthetases is more related to its prokaryotic counterpart than to any eukaryotic synthetase specific for a different amino acid. Our results raise the possibility that present day tyrosyl- and tryptophanyl-tRNA synthetases appeared after the separation of nucleated cells from eubacteria. The results have implications for the development of the genetic code.
机译:当前遗传密码的三核苷酸/氨基酸关系是通过tRNA合成酶的氨基酰化反应建立的,其中20个特定氨基酸中的每一个均与其同源tRNA相连,后者带有反密码子三核苷酸。由于其通用性,现代遗传密码的出现被认为早于通用系统树中原核和真核生物的分离。根据新的序列信息,我们在这里提出系统发育分析,该分析显示了酪氨酰和色氨酸-tRNA合成酶的异常情况。特别地,真核酪氨酸-和色氨酸-tRNA合成酶彼此之间比与其各自原核对应物更相关。相比之下,其他18个真核合成酶中的每一个与其原核对应物的相关性都比对不同氨基酸特异的任何真核合成酶的相关性更高。我们的结果提高了从真细菌分离有核细胞后,现今酪氨酸和色氨酸-tRNA合成酶出现的可能性。结果对遗传密码的发展有影响。

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