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Prediction of amino acid pairs sensitive to mutations in the spike protein from SARS related coronavirus.

机译:对SARS相关冠状病毒的刺突蛋白突变敏感的氨基酸对的预测。

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In this study, we analyzed the amino acid pairs affected by mutations in two spike proteins from human coronavirus strains 229E and OC43 by means of random analysis in order to gain some insight into the possible mutations in the spike protein from SARS-CoV. The results demonstrate that the randomly unpredictable amino acid pairs are more sensitive to the mutations. The larger is the difference between actual and predicted frequencies, the higher is the chance of mutation occurring. The effect induced by mutations is to reduce the difference between actual and predicted frequencies. The amino acid pairs whose actual frequencies are larger than their predicted frequencies are more likely to be targeted by mutations, whereas the amino acid pairs whose actual frequencies are smaller than their predicted frequencies are more likely to be formed after mutations. These findings are identical to our several recent studies, i.e. the mutations represent a process of degeneration inducing human diseases.
机译:在这项研究中,我们通过随机分析的方法分析了来自人类冠状病毒229E和OC43菌株的两个刺突蛋白突变的氨基酸对,以便对SARS-CoV刺突蛋白的可能突变有一些了解。结果表明,随机不可预测的氨基酸对对突变更敏感。实际频率和预测频率之间的差异越大,发生突变的机会就越高。突变引起的效果是减少实际频率与预测频率之间的差异。实际频率大于其预测频率的氨基酸对更有可能被突变作为目标,而实际频率小于其预测频率的氨基酸对则更容易在突变后形成。这些发现与我们最近的几项研究相同,即这些突变代表了一种诱发人类疾病的变性过程。

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