论文标题
肽和RNA自催化集之间的交集的混合藻类:生物编码的演变
Mixed Anhydrides at the Intersection Between Peptide and RNA Autocatalytic Sets: Evolution of Biological Coding
论文作者
论文摘要
我们提出了生物编码起源的方案。在这种情况下,编码是存储在一个位置中的化学信息之间的符号关系,该化学信息与存储在单独位置中的化学信息相关。编码是由两个最初分开的统一自催化集的合作相互作用,一个用于核酸,一个用于肽。当这两组相互作用时,一系列RNA折叠指导的过程导致了它们的联合合作。如今,氨基酸氨基酸氨基酸氨基酸氨基酸AMMINIC-AMP是这两个集体自身催化集建立的第一个共价关联,并巩固了它们的相互依赖性。该分子是这个时代的最大效果,是原始符号学的遗物,因此是RNA与蛋白质之间的编码。更明确的编码是由选择压力驱动的,以消除集体自催化集中的废物。最终,建立了单个氨基酸与短RNA碎片(例如,三个核苷酸)之间的1:1关系,导致今天被称为遗传密码。转移RNA氨基酰基酶或AARSS随着特定编码的出现而同时发生。 AARS酶的两类是两个核酸链中互补信息双重性的残余,如Rodin和Ohno所假定。编码演变的每个阶段都是由系统组件的下降选择驱动的,以满足康德整体的满足。最终被迫进行编码,因为开放式进化至少需要两种化学上不同的聚合物。只有一种聚合物的系统无法表现出此特征。因此,编码是我们所知道的生活的代名词,可以将其视为宇宙历史上的相位过渡。
We present a scenario for the origin of biological coding. In this context, coding is a semiotic relationship between chemical information stored in one location that links to chemical information stored in a separate location. Coding originated by the cooperative interaction of two, originally separate collectively autocatalytic sets, one for nucleic acids and one for peptides. When these two sets interacted, a series of RNA-folding-directed processes led to their joint cooperativity. The amino acyl adenylate, today amino acid-AMP, was the first covalent association made by these two collectively autocatalytic sets and solidified their interdependence. This molecule is a palimpsest of this era, and is a relic of the original semiotic, and thus coding, relationship between RNA and proteins. More defined coding was driven by selection pressure to eliminate waste in the collective autocatalytic sets. Eventually a 1:1 relationship between single amino acids and short RNA pieces (e.g., three nucleotides) was established, leading to what is today known as the genetic code. Transfer RNA aminoacylating enzymes, or aaRSs, arose concomitantly with the advent of specific coding. The two classes of aaRS enzymes are remnants of the duality of complementary information in two nucleic acid strands, as originally postulated by Rodin and Ohno. Every stage in the evolution of coding was driven by the downward selection on the components of a system to satisfy the Kantian whole. Coding was ultimately forced because there were at least two chemically distinct classes of polymers needed for open-ended evolution; systems with only one polymer cannot exhibit this characteristic. Coding is thus synonymous with life as we know it, and can be thought of as a phase transition in the history of the universe.