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The Roots of Genetic Coding in Aminoacyl-tRNA Synthetase Duality
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2021-06-21 , DOI: 10.1146/annurev-biochem-071620-021218
Charles W Carter 1 , Peter R Wills 2
Affiliation  

Codon-dependent translation underlies genetics and phylogenetic inferences, but its origins pose two challenges. Prevailing narratives cannot account for the fact that aminoacyl-tRNA synthetases (aaRSs), which translate the genetic code, must collectively enforce the rules used to assemble themselves. Nor can they explain how specific assignments arose from rudimentary differentiation between ancestral aaRSs and corresponding transfer RNAs (tRNAs). Experimental deconstruction of the two aaRS superfamilies created new experimental tools with which to analyze the emergence of the code. Amino acid and tRNA substrate recognition are linked to phase transfer free energies of amino acids and arise largely from aaRS class-specific differences in secondary structure. Sensitivity to protein folding rules endowed ancestral aaRS–tRNA pairs with the feedback necessary to rapidly compare alternative genetic codes and coding sequences. These and other experimental data suggest that the aaRS bidirectional genetic ancestry stabilized the differentiation and interdependence required to initiate and elaborate the genetic coding table.

中文翻译:


氨酰-tRNA合成酶二元性中遗传编码的根源

密码子依赖性翻译是遗传学和系统发育推断的基础,但它的起源提出了两个挑战。流行的叙述无法解释这样一个事实,即翻译遗传密码的氨酰-tRNA合成酶(aaRS)必须共同执行用于组装自身的规则。他们也无法解释祖先 aaRS 和相应的转移 RNA (tRNA) 之间的基本分化是如何产生特定分配的。两个 aaRS 超家族的实验性解构创建了新的实验工具,用于分析代码的出现。氨基酸和 tRNA 底物识别与氨基酸的相转移自由能有关,主要源于二级结构中 aaRS 类特异性差异。对蛋白质折叠规则的敏感性赋予祖先 aaRS-tRNA 对快速比较替代遗传密码和编码序列所需的反馈。这些和其他实验数据表明,aaRS 双向遗传祖先稳定了启动和阐述遗传编码表所需的分化和相互依赖性。

更新日期:2021-06-22
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