首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >Codes in the codons: construction of a codon/amino acid periodic table and a study of the nature of specific nucleic acid-protein interactions
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Codes in the codons: construction of a codon/amino acid periodic table and a study of the nature of specific nucleic acid-protein interactions

机译:密码子中的代码:密码子/氨基酸周期表的构建以及特定核酸-蛋白质相互作用的性质的研究

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The theory of "codon-amino acid coevolution" was first proposed by Woese in 1967. It suggests that there is a stereochemical matching - that is, affinity - between amino acids and certain of the base triplet sequences that code for those amino acids. We have constructed a common periodic table of codons and amino acids, where the nucleic acid table showed perfect axial symmetry for codons and the corresponding amino acid table also displayed periodicity regarding the biochemical properties (charge and hydrophobicity) of the 20 amino acids and the position of the stop signals. The table indicates that the middle (2nd) amino acid in the codon has a prominent role in determining some of the structural features of the amino acids. The possibility that physical contact between codons and amino acids might exist was tested on restriction enzymes. Many recognition site-like sequences were found in the coding sequences of these enzymes and as many as 73 examples of codon-amino acid co-location were observed in the 7 known 3D structures (December 2003) of endonuclease-nucleic acid complexes. These results indicate that the smallest possible units of specific nucleic acid-protein interaction are indeed the stereochemically compatible codons and amino acids.
机译:Woese于1967年首次提出“密码子-氨基酸共进化”的理论。这表明氨基酸与某些编码这些氨基酸的碱基三联体序列之间存在立体化学匹配-即亲和力。我们构建了一个通用的密码子和氨基酸周期表,其中的核酸表显示出完美的密码子轴向对称性,相应的氨基酸表还显示了有关这20个氨基酸的生化特性(电荷和疏水性)和位置的周期性停止信号。该表表明,密码子中的中间(2 nd )氨基酸在确定氨基酸的某些结构特征方面具有重要作用。在限制酶上测试了密码子和氨基酸之间可能存在物理接触的可能性。在这些酶的编码序列中发现了许多识别位点样序列,在核酸内切酶-核酸复合物的7种已知3D结构(2003年12月)中观察到多达73个密码子-氨基酸共定位实例。这些结果表明,特异性核酸-蛋白质相互作用的最小可能单元确实是立体化学相容的密码子和氨基酸。

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