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首页> 外文期刊>Current Bioinformatics >The Implication of Codon Usage Design and Expression Level in Determining the Nature of Selection and Functionality Amongst the Amino Acid Biosynthetic Pathway Coding Sequences of Arthrobacter sp. FB24
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The Implication of Codon Usage Design and Expression Level in Determining the Nature of Selection and Functionality Amongst the Amino Acid Biosynthetic Pathway Coding Sequences of Arthrobacter sp. FB24

机译:密码子使用设计和表达水平对确定节杆菌属氨基酸生物合成途径编码序列选择和功能性质的影响。 FB24

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Amino acid biosynthesis is an immensely important life process requiring the participation of nearly hundred gene products, differing in terms of codon usage pattern, expressivity and selection pressure. In this study an attempt was made to categorize the gene products according to their expression level, nature of selection and functionality analyzing the amino acid biosynthetic pathway genes of the soil bacterium Arthrobacter, known for its varied metabolic activities and a key agent for industrial production of amino acids. The relationship between the different parameters like expression level, codon usage and selection pressure was calculated to find out the correlation of biasness, expression level, nature of selection and functionality amongst the genes involved in amino acid biosynthetic pathways. We found that genes coding for enzymes and proteins with large number of functions have higher codon usage bias and are subjected mostly to purifying selection. Gene sequences of proteins and enzymes with low functionality showed less codon usage bias and are under positive selection. The multifunctional genes mostly show high expression level and it is highly correlated with codon usage bias. The results of this study demonstrate that functionality and nature of selective forces acting on the coding sequences can be determined by studying the correlation between the different parameters like effective number of codon, codon adaptation index and nucleotide substitution ratios and careful study of all these parameters is a pretty good indicator for determining the functionality of the genes and this can be extended towards the genes of unknown function(s).
机译:氨基酸生物合成是一个非常重要的生命过程,需要近百种基因产物的参与,这在密码子使用方式,表达能力和选择压力方面有所不同。在这项研究中,尝试根据基因产物的表达水平,选择的性质和功能来对基因产物进行分类,以分析土壤细菌节杆菌的氨基酸生物合成途径基因,该细菌以其多样的代谢活性和工业生产的关键试剂而闻名。氨基酸。计算表达水平,密码子使用和选择压力等不同参数之间的关系,以找出氨基酸生物合成途径中涉及的基因之间的偏倚,表达水平,选择性质和功能的相关性。我们发现,编码具有大量功能的酶和蛋白质的基因具有较高的密码子使用偏倚,并且大多经过纯化选择。具有低功能的蛋白质和酶的基因序列显示出较少的密码子使用偏倚,并且处于正选择状态。多功能基因大多表现出高表达水平,并且与密码子使用偏倚高度相关。这项研究的结果表明,可以通过研究不同参数之间的相关性(如有效密码子数量,密码子适应指数和核苷酸取代率)来确定作用于编码序列的选择性功能的功能和性质,并仔细研究所有这些参数是这是确定基因功能的一个很好的指标,并且可以扩展到未知功能的基因。

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