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首页> 外文期刊>Virus Genes >Tax & rex: overlapping genes of the Deltaretrovirus group.
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Tax & rex: overlapping genes of the Deltaretrovirus group.

机译:Tax&rex:Deltaretrovirus组的重叠基因。

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Bovine leukemia virus and human T-cell leukemia viruses I and II, members of the Deltaretrovirus group, have two regulatory genes, tax and rex, that are coded in overlapping reading frames. We found that sequence variations in the rex gene of each virus result in amino acid differences significantly more often than variations in the tax gene. For all three viruses the highest ratio of non-synonymous to synonymous changes was found in the rex gene. In the overlapping regions of tax and rex, the second codon position of Rex corresponds to the third codon position of Tax. Nucleotide C was present in all genes of the three viruses at the highest frequency and this bias was most pronounced in the rex gene. More specifically we found that the C bias and nucleotide variation is greatest at the second codon position of Rex and the third codon position of Tax in the area of tax/rex overlap. Changes in the second codon position of Rex always resulted in amino acid change whereas changes in the third codon position of Tax resulted in amino acid changes less than a third of the time. Analysis of the amino acid frequencies in both proteins shows that there is a disproportionately large percentage of the amino acids alanine, proline, serine and threonine (the four amino acids whose second codon position is C) in Rex. These findings led us to hypothesize that the Rex protein can withstand more amino acid changes than can the Tax protein suggesting that the Tax protein experiences higher evolutionary constraints and is the more conserved of the two proteins.
机译:Deltaretrovirus组成员牛白血病病毒I和人类T细胞白血病病毒I和II具有两个调节基因,tax和rex,它们以重叠的阅读框编码。我们发现,每种病毒的rex基因序列变异导致氨基酸差异的频率明显比tax基因变异更高。对于所有三种病毒,在rex基因中发现了最高的非同义与同义变化比率。在税收和雷克斯的重叠区域中,雷克斯的第二个密码子位置对应于税收的第三个密码子位置。核苷酸C出现在三种病毒的所有基因中的频率最高,这种偏倚在rex基因中最为明显。更具体地,我们发现在税收/雷克斯重叠的区域中,Rex的第二个密码子位置和Tax的第三个密码子位置的C偏差和核苷酸变异最大。 Rex的第二个密码子位置的变化总是导致氨基酸变化,而Tax的第三个密码子位置的变化导致氨基酸变化的时间少于三分之一。对两种蛋白质中氨基酸频率的分析表明,Rex中氨基酸的丙氨酸,脯氨酸,丝氨酸和苏氨酸(这两个氨基酸的第二个密码子位置为C的氨基酸)比例过高。这些发现使我们假设Rex蛋白比Tax蛋白能承受更多的氨基酸变化,这表明Tax蛋白受到更高的进化限制,并且是这两种蛋白中最保守的。

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