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Compositional properties and codon usage of TP73 gene family

机译:TP73基因家族的组成性质和密码子使用

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摘要

The TP73 gene is considered as one of the members of TP53 gene family and shows much homology to p53 gene. TP73 gene plays a pivotal role in cancer studies in addition to other biological functions. Codon usage bias (CUB) is the phenomenon of unequal usage of synonymous codons for an amino acid wherein some codons are more frequently used than others and it reveals the evolutionary relationship of a gene. Here, we report the pattern of codon usage in TP73 gene using various bioinformatic tools as no work was reported yet. Nucleotide composition analysis suggested that the mean nucleobase C was the highest, followed by G and the gene was GC rich. Correlation analysis between codon usage and GC3 suggested that most of the GC-ending codons showed positive correlation while most of the AT-ending codons showed negative correlation with GC3 in the coding sequences of TP73 gene variants in human. The CUB is moderate in human TP73 gene as evident from intrinsic codon deviation index (ICDI) analysis. Nature selected against two codons namely ATA (isoleucine) and AGA (arginine) in the coding sequences of TP73 gene during the course of evolution. A significant correlation (p 0.05) was found between overall nucleotide composition and its composition at the 3rd codon position, indicating that both mutation pressure and natural selection might influence the CUB. The correlation analysis between ICDI and biochemical properties of protein suggested that variation of CUB was associated with degree of hydrophobicity and length of protein.
机译:TP73基因被认为是TP53基因家族的成员之一,并且对P53基因显示出很大的同源性。除了其他生物学功能外,TP73基因在癌症研究中起着枢轴作用。密码子使用偏差(幼崽)是对氨基酸的同义密码子的不平等使用现象,其中一些密码子比其他密码子更常用,并且它揭示了基因的进化关系。在这里,我们通过尚未使用各种生物信息工具报告TP73基因中的密码子使用模式。核苷酸成分分析表明,平均核酸酶C是最高的,其次是G,基因富含GC。密码子使用和GC3之间的相关性分析表明,大多数GC结束密码子显示出正相关,而大多数处于终端密码子与人类中TP73基因变体的编码序列中的GC3与GC3的负相关性。从内在密码子偏差指数(ICDI)分析中,幼崽在人体TP73基因中进行中度。在进化过程中,在TP73基因的编码序列中,对两封密码子选择的自然选择ATA(异亮氨酸)和AGA(精氨酸)。在第3密码子位置的总核苷酸组合物及其组合物之间发现显着的相关性(P <0.05),表明突变压力和自然选择可能影响幼崽。蛋白质ICDI与生化特性的相关分析表明,幼崽的变异与疏水程度和蛋白质长度有关。

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