Department of Molecular Biology and Biochemistry, University of Málaga, 29071 Málaga, Spain.
Int J Mol Sci. 2023 Jan 2;24(1):796. doi: 10.3390/ijms24010796.
The relative contribution of mutation and selection to the amino acid substitution rates observed in empirical matrices is unclear. Herein, we present a neutral continuous fitness-stability model, inspired by the Arrhenius law (qij=aije-ΔΔGij). The model postulates that the rate of amino acid substitution (i→j) is determined by the product of a pre-exponential factor, which is influenced by the genetic code structure, and an exponential term reflecting the relative fitness of the amino acid substitutions. To assess the validity of our model, we computed changes in stability of 14,094 proteins, for which 137,073,638 in silico mutants were analyzed. These site-specific data were summarized into a 20 square matrix, whose entries, ΔΔGij, were obtained after averaging through all the sites in all the proteins. We found a significant positive correlation between these energy values and the disease-causing potential of each substitution, suggesting that the exponential term accurately summarizes the fitness effect. A remarkable observation was that amino acids that were highly destabilizing when acting as the source, tended to have little effect when acting as the destination, and vice versa (source → destination). The Arrhenius model accurately reproduced the pattern of substitution rates collected in the empirical matrices, suggesting a relevant role for the genetic code structure and a tuning role for purifying selection exerted via protein stability.
在经验矩阵中观察到的氨基酸替换率的突变和选择的相对贡献尚不清楚。在此,我们提出了一个受阿累尼乌斯定律(qij=aije-ΔΔGij)启发的中性连续适应度稳定性模型。该模型假定氨基酸替换(i→j)的速率取决于由遗传密码结构影响的前置因子和反映氨基酸替换相对适应度的指数项的乘积。为了评估我们模型的有效性,我们计算了 14094 种蛋白质的稳定性变化,分析了 137073638 种计算机突变体。这些基于位置的数据集被总结为一个 20 平方矩阵,其条目ΔΔGij 是通过对所有蛋白质中的所有位置进行平均获得的。我们发现这些能量值与每个替换的致病潜力之间存在显著的正相关关系,这表明指数项准确地概括了适应度效应。一个显著的观察结果是,作为来源时高度不稳定的氨基酸,当其作为目的地时往往影响不大,反之亦然(来源→目的地)。阿累尼乌斯模型准确地再现了经验矩阵中收集的替换率模式,这表明遗传密码结构和通过蛋白质稳定性施加的净化选择的调节作用具有重要作用。