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Homochirality in an Early Peptide World

机译:早期肽世界中的手性

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A recently proposed model of non-autocatalytic reactions in dipeptide formation that leads to spontaneous symmetry breaking and homochirality was examined. The model is governed by activation, polymerization, epimerization, and depolymerization of amino acids. Symmetry breaking was determined to result primarily from the different rates of reactions that involve homodimers and heterodimers, i.e., stereoselective reactions, and the fact that epimerization can only occur on the N-terminal residue and not on the C-terminal residue. This corresponds to an auto-inductive cyclic process that works only in one direction. It is argued that epimerization mimics autocatalytic behavior as well as mutual antagonism, both of which are known to be crucial for the production of full homochirality.
机译:研究了最近提出的二肽形成中非自催化反应的模型,该模型导致自发的对称性破坏和同手性。该模型由氨基酸的活化,聚合,差向异构和解聚控制。确定对称性破坏主要是由于涉及同二聚体和异二聚体的不同反应速率,即立体选择性反应,以及差向异构化只能在N-末端残基而不在C-末端残基上发生的事实。这对应于仅在一个方向上起作用的自感应循环过程。有人认为,差向异构化模仿了自催化行为以及相互拮抗作用,众所周知,这两者对于产生完全的手性至关重要。

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