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In this work it is shown that 20 canonical amino acids (AAs) within genetic code appear to be a whole system with strict distinction in Genetic Code Table (GCT) into some different quantums: 20, 23, 61 amino acid molecules. These molecules…

生物大分子 · 定量生物学 2019-09-23 Miloje M. Rakocevic

Degeneracy of the genetic code is a biological way to minimize effects of the undesirable mutation changes. Degeneration has a natural description on the 5-adic space of 64 codons $\mathcal{C}_5 (64) = \{n_0 + n_1 5 + n_2 5^2 : n_i = 1, 2,…

基因组学 · 定量生物学 2007-07-16 Branko Dragovich , Alexandra Dragovich

The systematics of indices of physico-chemical properties of codons and amino acids across the genetic code are examined. Using a simple numerical labelling scheme for nucleic acid bases, data can be fitted as low-order polynomials of the 6…

生物物理 · 物理学 2009-11-05 J. D. Bashford , P. D. Jarvis

In this work it is shown that 20 canonical amino acids (AAs) within genetic code appear to be a whole system with strict AAs positions; more exactly, with AAs ordinal number in three variants; first variant 00-19, second 00-21 and third…

其他定量生物学 · 定量生物学 2015-06-26 Zvonimir M. Damjanovic , Miloje M. Rakocevic

The genetic code structure into distinct multiplet-classes as well as the numeric degeneracies of the latter are revealed by a two-step process. First, an empirical inventory of the degeneracies (of the shuffled multiplets) in two specific…

其他定量生物学 · 定量生物学 2009-11-13 Tidjani Negadi

Important aspects of the process of information storage and retrieval in DNA and RNA, and its evolution, are the role of the anticodons and associated $t$RNA's, and correlations between anticodons and amino acids; the degeneracy of the…

生物物理 · 物理学 2007-05-23 P. D. Jarvis , J. D. Bashford

The number of atoms in the four ribonucleotides uridine monophosphate, cytidine monophosphate, adenine monophosphate and guanine monophosphate is taken as a key parameter. A mathematical relation describing the condensation of the three…

其他定量生物学 · 定量生物学 2014-06-25 Tidjani Negadi

The genetic code is the set of rules by which information encoded in genetic material (DNA or RNA sequences) is translated into proteins (amino acid sequences) by living cells. The code defines a mapping between tri-nucleotide sequences,…

其他定量生物学 · 定量生物学 2015-12-03 Jayanta Kumar Das , Atrayee Majumder , Pabitra Pal Choudhury

The present paper is devoted to foundations of p-adic modelling in genomics. Considering nucleotides, codons, DNA and RNA sequences, amino acids, and proteins as information systems, we have formulated the corresponding p-adic formalisms…

其他定量生物学 · 定量生物学 2010-12-01 Branko Dragovich , Alexandra Dragovich

In a certain way, this paper presents the continuation of the previous one which discussed the harmonic structure of the genetic code (Rakocevic, 2004). Several new harmonic structures presented in this paper, through specific unity and…

其他定量生物学 · 定量生物学 2007-05-23 Miloje M. Rakocevic

The genetic code is connection between 64 codons, which are building blocks of the genes, and 20 amino acids, which are building blocks of the proteins. In addition to coding amino acids, a few codons code stop signal, which is at the end…

其他定量生物学 · 定量生物学 2012-02-14 Branko Dragovich

We discuss the similarity of the degeneration structure of the genetic code with a pure number theoretic -- ``divisors code.'' The most interesting thing about our observation is not that there is a connection between number theory and the…

其他定量生物学 · 定量生物学 2007-05-23 Andrei Khrennikov , Marcus Nilsson

The standard genetic code is known to be much more efficient in minimizing adverse effects of misreading errors and one-point mutations in comparison with a random code having the same structure, i.e. the same number of codons coding for…

定量方法 · 定量生物学 2012-10-17 V. R. Chechetkin , V. V. Lobzin

This work aims at showing the relevance and the applications possibilities of the Fibonacci sequence, and also its q-deformed or quantum extension, in the study of the genetic code(s). First, after the presentation of a new formula, an…

其他定量生物学 · 定量生物学 2015-10-06 Tidjani Negadi

Why is the genetic code the way it is? The most successful theory states that the codon assignments minimise the effects of errors arising in primordial living systems. Here a transversion is reported that leaves invariant degeneracy in the…

生物物理 · 物理学 2007-05-23 Jean-Luc Jestin

A representation of the genetic code as a six-dimensional Boolean hypercube is described. This structure is the result of the hierarchical order of the interaction energies of the bases in codon-anticodon recognition. In this paper it is…

无序系统与神经网络 · 物理学 2007-05-23 Miguel A. Jimenez-Montano , Carlos R. de la Mora-Basanez , Thorsten Poeschel

Using basic properties of p-adic numbers, we consider a simple new approach to describe main aspects of DNA sequence and genetic code. Central role in our investigation plays an ultrametric p-adic information space which basic elements are…

基因组学 · 定量生物学 2010-12-01 Branko Dragovich , Alexandra Dragovich

In this short paper, it is shown that the multiplet structure of the standard genetic code is derivable from the total number of nucleotides contained in 64 codons, 192, a small number. The degeneracy class-number is derived as the number…

其他定量生物学 · 定量生物学 2012-07-17 Tidjani Negadi

Degeneracy is a salient feature of genetic codes, because there are more codons than amino acids. The conventional table for genetic codes suffers from an inability of illustrating a symmetrical nature among genetic base codes. In fact,…

其他定量生物学 · 定量生物学 2017-03-13 Jian-Jun Shu

It has been proposed that the degeneracy of the genetic code,i.e., the phenomenon that different codons (base triplets) of DNA are transcribed into the same amino acid, may be interpreted as the result of a symmetry breaking process. In the…

数学物理 · 物理学 2007-05-23 F. M. Forger , R. S. Sachse
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