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A binary representation of the genetic code

机译:遗传密码的二进制表示

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This article introduces a novel binary representation of the canonical genetic code based on both the structural similarities of the nucleotides, as well as the physicochemical properties of the encoded amino acids. Each of the four mRNA bases is assigned a unique 2-bit identifier, so that the 64 triplet codons are each indexed by a 6-bit label. The ordering of the bits reflects the hierarchical organization manifested by the DNA replication/repair and tRNA translation systems. In this system, transition and transversion mutations are naturally expressed as binary operations, and the severities of the different point mutations can be analyzed. Using a principal component analysis, it is shown that the physicochemical properties of amino acids related to protein folding also correlate with certain bit positions of their respective labels. Thus, the likelihood for a point mutation to be conservative, and less likely to cause a change in protein functionality, can be estimated. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文介绍了基于核苷酸的结构相似性的规范遗传码的新型二进制表示,以及编码氨基酸的物理化学性质。四个MRNA基座中的每一个被分配唯一的2位标识符,使得64个三重密码子各自索引6位标签。比特的排序反映了DNA复制/修复和TRNA翻译系统表现出的分层组织。在该系统中,转变和横转化突变自然表示为二元操作,并且可以分析不同点突变的严重程度。使用主成分分析,表明与蛋白质折叠相关的氨基酸的物理化学性质也与各自标签的某些位位置相关。因此,可以估计点突变是保守的可能性,并且不太可能导致蛋白质功能的变化。 (c)2017 Elsevier B.v.保留所有权利。

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