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Frozen Accident Pushing 50: Stereochemistry, Expansion, and Chance in the Evolution of the Genetic Code

机译:冰冻事故推动50:遗传密码进化中的立体化学,扩展和机会

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Nearly 50 years ago, Francis Crick propounded the frozen accident scenario for the evolution of the genetic code along with the hypothesis that the early translation system consisted primarily of RNA. Under the frozen accident perspective, the code is universal among modern life forms because any change in codon assignment would be highly deleterious. The frozen accident can be considered the default theory of code evolution because it does not imply any specific interactions between amino acids and the cognate codons or anticodons, or any particular properties of the code. The subsequent 49 years of code studies have elucidated notable features of the standard code, such as high robustness to errors, but failed to develop a compelling explanation for codon assignments. In particular, stereochemical affinity between amino acids and the cognate codons or anticodons does not seem to account for the origin and evolution of the code. Here, I expand Crick’s hypothesis on RNA-only translation system by presenting evidence that this early translation already attained high fidelity that allowed protein evolution. I outline an experimentally testable scenario for the evolution of the code that combines a distinct version of the stereochemical hypothesis, in which amino acids are recognized via unique sites in the tertiary structure of proto-tRNAs, rather than by anticodons, expansion of the code via proto-tRNA duplication, and the frozen accident.
机译:大约50年前,弗朗西斯·克里克(Francis Crick)提出了冷冻事故情景,说明了遗传密码的进化,以及早期翻译系统主要由RNA组成的假设。在冻结事故的视角下,该代码在现代生活形式中是通用的,因为密码子分配的任何更改都将带来极大的危害。冻结事故可以被认为是密码进化论的默认理论,因为它不暗示氨基酸与同源密码子或反密码子之间的任何特定相互作用,也不暗示密码的任何特定属性。随后的49年代码研究已经阐明了标准代码的显着特征,例如对错误的高鲁棒性,但未能为密码子分配提供令人信服的解释。特别地,氨基酸与同源密码子或反密码子之间的立体化学亲和力似乎不能解释密码的起源和进化。在这里,我通过提供证据证明这种早期翻译已经获得了高保真度并允许蛋白质进化,从而扩展了Crick关于仅RNA翻译系统的假设。我概述了结合立体化学假说的不同版本的代码演化的实验可测试场景,在该场景中,氨基酸是通过pro-tRNA的三级结构中的独特位点而不是反密码子识别的,而通过原始tRNA复制和冰冻事故。

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