Agmon Ilana
Institute for Advanced Studies in Theoretical Chemistry, Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Haifa 3200003, Israel.
Fritz Haber Research Center for Molecular Dynamics, Hebrew University, Jerusalem 9190401, Israel.
Life (Basel). 2024 Feb 18;14(2):277. doi: 10.3390/life14020277.
To track down the possible roots of life, various models for the initial living system composed of different combinations of the three extant biopolymers, RNA, DNA, and proteins, are presented. The suitability of each molecular set is assessed according to its ability to emerge autonomously, sustain, and evolve continuously towards life as we know it. The analysis incorporates current biological knowledge gained from high-resolution structural data and large sequence datasets, together with experimental results concerned with RNA replication and with the activity demonstrated by standalone constructs of the ribosomal Peptidyl Transferase Center region. The scrutiny excludes the DNA-protein combination and assigns negligible likelihood to the existence of an RNA-DNA world, as well as to an RNA world that contained a replicase made of RNA. It points to the precedence of an RNA-protein system, whose model of emergence suggests specific processes whereby a coded proto-ribosome ribozyme, specifically aminoacylated proto-tRNAs and a proto-polymerase enzyme, could have autonomously emerged, cross-catalyzing the formation of each other. This molecular set constitutes a feasible starting point for a continuous evolutionary path, proceeding via natural processes from the inanimate matter towards life as we know it.
为了探寻生命可能的起源,本文提出了由现存三种生物聚合物(RNA、DNA和蛋白质)的不同组合构成的初始生命系统的各种模型。根据每种分子组合自主出现、维持并朝着我们所知的生命形式持续进化的能力,评估其适用性。分析结合了从高分辨率结构数据和大型序列数据集中获得的当前生物学知识,以及与RNA复制和核糖体肽基转移酶中心区域独立构建体所展示的活性相关的实验结果。详细审查排除了DNA - 蛋白质组合,并认为RNA - DNA世界以及包含由RNA构成的复制酶的RNA世界存在的可能性微乎其微。它指出了RNA - 蛋白质系统的优先性,其出现模型表明了特定的过程,即编码的原核糖体核酶、特异性氨酰化的原tRNA和原聚合酶能够自主出现,相互交叉催化形成彼此。这种分子组合构成了一条连续进化路径的可行起点,通过自然过程从无生命物质朝着我们所知的生命形式发展。