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Properties of the Genetic Code under Directional, Asymmetric Mutational Pressure

机译:定向不对称突变压力下遗传密码的性质

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摘要

We have used the Monte Carlo method for simulating the evolution of protein coding sequences from the Borrelia burgdorferi genome under the directional mutational pressure, described by the nucleotide substitution matrix experimentally found for this genome. Since the mutational pressure is asymmetric ― different for each of the two DNA strands, and the coding sequences are also asymmetric, the mutagenic effect depends on the topology of the coding sequence on the chromosome. While the direct effect of the directional mutational pressure on the codon usage is predictable, the effect on the amino-acid composition depends on the degeneracy of the genetic code, initial composition of the protein sequence and codon usage. Assuming additional degeneracy of information connected with the structure of amino-acids, we have found that the best strategy for the evolution of some genes in the B. burgdorferi genome is to change the mutational pressure by inversions, which corresponds to changing the substitution matrix to the mirror one. It mimics the behavior of a stock market player who can gain by investing only in two stock sets even if during that time both sets have lost.
机译:我们已经使用了蒙特卡罗方法来模拟在定向突变压力下博氏疏螺旋体基因组中蛋白质编码序列的进化,该突变是通过实验找到的针对该基因组的核苷酸取代矩阵来描述的。由于突变压力是不对称的-两条DNA链的每条都不相同,并且编码序列也是不对称的,因此诱变效果取决于染色体上编码序列的拓扑。虽然定向突变压力对密码子使用的直接影响是可以预见的,但对氨基酸组成的影响取决于遗传密码的简并性,蛋白质序列的初始组成和密码子使用。假设与氨基酸结构有关的信息进一步简并,我们发现,B。burgdorferi基因组中某些基因进化的最佳策略是通过反转改变突变压力,这相当于将替换矩阵更改为镜子一。它模仿了一个股票市场参与者的行为,该参与者仅通过投资两套股票就可以获利,即使在这段时间内两套股票都输了。

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