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The Stereochemical Basis of the Genetic Code and the (Mostly) Autotrophic Origin of Life

机译:遗传密码的立体化学基础和生命的(主要)自养起源

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摘要

Spark-tube experiments and analysis of meteorite contents have led to the widespread notion that abiotic organic molecules were the first life components. However, there is a contradiction between the abundance of simple molecules, such as the amino acids glycine and alanine, observed in these studies, and the minimal functional complexity that even the least sophisticated living system should require. I will argue that although simple abiotic molecules must have primed proto-metabolic pathways, only Darwinian evolving systems could have generated life. This condition may have been initially fulfilled by both replicating RNAs and autocatalytic reaction chains, such as the reductive citric acid cycle. The interactions between nucleotides and biotic amino acids, which conferred new functionalities to the former, also resulted in the progressive stereochemical recognition of the latter by cognate anticodons. At this point only large enough amino acids would be recognized by the primordial RNA adaptors and could polymerize forming the first peptides. The gene duplication of RNA adaptors was a crucial event. By removing one of the anticodons from the acceptor stem the new RNA adaptor liberated itself from the stereochemical constraint and could be acylated by smaller amino acids. The emergence of messenger RNA and codon capture followed.
机译:火花管实验和陨石含量分析导致人们普遍认为非生物有机分子是生命的首要组成部分。然而,在这些研究中观察到大量的简单分子(例如氨基酸甘氨酸和丙氨酸)与即使是最不复杂的生物系统也需要的最小功能复杂性之间存在矛盾。我将争辩说,尽管简单的非生物分子必须具有引发新陈代谢的途径,但只有达尔文进化体系才能产生生命。此条件最初可能已经通过复制RNA和自催化反应链(例如还原柠檬酸循环)得到满足。核苷酸与生物氨基酸之间的相互作用为前者赋予了新的功能,也导致同源反密码子逐步对后者进行了立体化学识别。在这一点上,原始RNA衔接子只能识别足够大的氨基酸,并且可以聚合形成第一个肽。 RNA衔接子的基因复制是关键事件。通过从受体茎中去除一种反密码子,新的RNA衔接子从立体化学约束中释放出来,可以被较小的氨基酸酰化。随后信使RNA和密码子捕获的出现。

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