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One ancestor for two codes viewed from the perspective of two complementary modes of tRNA aminoacylation

机译:从tRNA氨酰化的两种互补模式的角度看两个密码的祖先

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摘要

BackgroundThe genetic code is brought into action by 20 aminoacyl-tRNA synthetases. These enzymes are evenly divided into two classes (I and II) that recognize tRNAs from the minor and major groove sides of the acceptor stem, respectively. We have reported recently that: (1) ribozymic precursors of the synthetases seem to have used the same two sterically mirror modes of tRNA recognition, (2) having these two modes might have helped in preventing erroneous aminoacylation of ancestral tRNAs with complementary anticodons, yet (3) the risk of confusion for the presumably earliest pairs of complementarily encoded amino acids had little to do with anticodons. Accordingly, in this communication we focus on the acceptor stem.
机译:背景遗传密码通过20种氨酰基-tRNA合成酶起作用。这些酶平均分为两类(I和II),分别从受体茎的小沟和大沟侧识别tRNA。最近我们报道:(1)合成酶的核酶前体似乎使用了相同的两种空间镜像模式的tRNA识别,(2)具有这两种模式可能有助于防止祖先tRNA的氨基氨化被互补的反密码子所误解。 (3)可能最早出现的互补编码氨基酸对的混淆风险与反密码子无关。因此,在这种交流中,我们关注受体茎。

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