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氨基酸与核苷酸之间的直接相互作用作为遗传密码起源的一种可能的物理化学基础。

Direct interaction between amino acids and nucleotides as a possible physicochemical basis for the origin of the genetic code.

作者信息

Hobish M K, Wickramasinghe N S, Ponnamperuma C

机构信息

Vectrix Corporation, Baltimore, MD 21209, USA.

出版信息

Adv Space Res. 1995 Mar;15(3):365-82. doi: 10.1016/s0273-1177(99)80108-2.

Abstract

A study of the association of homocodonic amino acids and selected heterocodonic amino acids with selected nucleotides in aqueous solution was undertaken to examine a possible physical basis for the origin of codon assignments. These interactions were studied using 1H nuclear magnetic resonance spectroscopy (NMR). Association constants for the various interactions were determined by fitting the changes in the chemical shifts of the anomeric and ring protons of the nucleoside moieties as a function of amino acid concentration to an isotherm which described the binding interaction. The strongest association of all homocodonic amino acids were with their respective anticodonic nucleotide sequences. The strength of association was seen to increase with increase in the chain length of the anticodonic nucleotide. The association of these amino acids with different phosphate esters of nucleotides suggests that a definite isomeric structure is required for association with a specified amino acid; the 5'-mononucleotides and (3'-5')-linked dinucleotides are the favored geometries for strong associations. Use of heterocodonic amino acids and nonprotein amino acids supports these findings. We conclude that there is at least a physicochemical, anticodonic contribution to the origin of the genetic code.

摘要

开展了一项关于同编码氨基酸和选定的异编码氨基酸与水溶液中选定核苷酸之间关联的研究,以检验密码子分配起源的可能物理基础。这些相互作用通过1H核磁共振光谱法(NMR)进行研究。通过将核苷部分的异头质子和环质子的化学位移变化作为氨基酸浓度的函数拟合到描述结合相互作用的等温线,确定了各种相互作用的缔合常数。所有同编码氨基酸中最强的缔合是与它们各自的反密码子核苷酸序列。缔合强度随着反密码子核苷酸链长度的增加而增加。这些氨基酸与核苷酸的不同磷酸酯的缔合表明,与特定氨基酸缔合需要确定的异构体结构;5'-单核苷酸和(3'-5')连接的二核苷酸是强缔合的有利几何结构。使用异编码氨基酸和非蛋白质氨基酸支持了这些发现。我们得出结论,遗传密码的起源至少有一个物理化学的反密码子贡献。

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