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DIRECT INTERACTIONS BETWEEN AMINO ACIDS AND NUCLEOTIDES AS A POSSIBLE EXPLANATION FOR THE ORIGIN OF THE GENETIC CODE (PREBIOTIC EVOLUTION).

机译:氨基酸和核苷酸之间的直接相互作用可能是遗传密码起源的解释(遗传进化)。

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摘要

The origin of nucleic acid-directed protein synthesis system is a critical circumstance in the history of living systems. Despite the fact that molecular mechanisms of the modern protein synthesis system have been known in increasingly detailed terms, our understanding of the history of the genetic code remains poor.; A study of the associations of amino acids and nucleotides was undertaken with a view to establish a possible physical basis for the origin of the codon assignment. The association of homocodonic amino acids (L-Phe, L-Lys, L-Pro, and Gly) and some heterocodonic amino acids (L-Ala, L-Arg, L-Cys, L-Glu, L-Met, and L-Tyr) with various nucleotide sequences (nucleoside 2'-, nucleoside 3'-, or nucleoside 5'-monophosphates; dinucleoside (2'-5')-, or dinucleoside (3'-5') -monophosphates; and trinucleoside (3'-5')-diphosphates) were studied using ('1)H NMR spectroscopy. Association constants for the various interactions were determined by following the changes in the chemical shifts of the anomeric and ring protons of the nucleotide as a function of amino acid concentration and fitting the experimental data to a binding curve. Curve fitting was done using a nonlinear least squares regression analysis program which analyzed the data and returned the best estimates for the association constants along with the statistics of the fit, which included the confidence limits for the association constants, variance, correlation coefficients, and plots of residuals vs. dependent and independent variables.; The strongest associations of all the amino acids investigated were observed with their respective anticodonic nucleotide sequences. The strength of association was seen to increase significantly with increase in the chain length of the anticodonic nucleotide from monomer, dimer through trimer. The association of amino acids with different phosphate esters of nucleosides suggests that a definite isomeric structure of the nucleotide is required for association with an amino acid: the 5'-mononucleotides, and (3'-5') linked dinucleoside monophosphates are the favored geometries for strong associations. The conclusion reached as a result of these studies is that there is a possible anticodonic basis for the origin of the genetic code.
机译:核酸指导的蛋白质合成系统的起源是生命系统历史上的关键情况。尽管现代蛋白质合成系统的分子机制已越来越详细地被人们所了解,但是我们对遗传密码的历史的理解仍然很差。为了确定密码子分配起源的可能的物理基础,对氨基酸和核苷酸的关联进行了研究。同高子氨基酸(L-Phe,L-Lys,L-Pro和Gly)与某些杂多子氨基酸(L-Ala,L-Arg,L-Cys,L-Glu,L-Met和L的关联) -Tyr)具有各种核苷酸序列(核苷2'-,核苷3'-或核苷5'-单磷酸;二核苷(2'-5')-或二核苷(3'-5')-单磷酸;和三核苷(使用('1)H NMR光谱研究了3'-5')-二磷酸盐)。通过遵循核苷酸的异头异构体和环质子的化学位移随氨基酸浓度变化并将实验数据拟合至结合曲线,确定各种相互作用的缔合常数。使用非线性最小二乘回归分析程序进行曲线拟合,该程序分析数据并返回关联常数的最佳估计值以及拟合统计数据,其中包括关联常数,方差,相关系数和图的置信度残差与因变量和自变量的关系;观察到所有氨基酸的最强关联与它们各自的反鳕核苷酸序列。观察到缔合强度随着反密码子核苷酸从单体,二聚体到三聚体的链长的增加而显着增加。氨基酸与核苷的不同磷酸酯的缔合表明与氨基酸缔合需要核苷酸的明确异构体结构:5'-单核苷酸和(3'-5')连接的二核苷单磷酸是优选的几何结构加强联系。这些研究得出的结论是,遗传密码的起源可能存在反反义基础。

著录项

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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