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Low Temperature Adaptation Is Not the Opposite Process of High Temperature Adaptation in Terms of Changes in Amino Acid Composition

机译:就氨基酸组成的变化而言低温适应不是高温适应的对立过程

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摘要

Previous studies focused on psychrophilic adaptation generally have demonstrated that multiple mechanisms work together to increase protein flexibility and activity, as well as to decrease the thermostability of proteins. However, the relationship between high and low temperature adaptations remains unclear. To investigate this issue, we collected the available predicted whole proteome sequences of species with different optimal growth temperatures, and analyzed amino acid variations and substitutional asymmetry in pairs of homologous proteins from related species. We found that changes in amino acid composition associated with low temperature adaptation did not exhibit a coherent opposite trend when compared with changes in amino acid composition associated with high temperature adaptation. This result indicates that during their evolutionary histories the proteome-scale evolutionary patterns associated with prokaryotes exposed to low temperature environments were distinct from the proteome-scale evolutionary patterns associated with prokaryotes exposed to high temperature environments in terms of changes in amino acid composition of the proteins.
机译:先前针对嗜冷性适应的研究通常表明,多种机制共同作用以增加蛋白质的柔韧性和活性,并降低蛋白质的热稳定性。但是,高温和低温适应之间的关系仍然不清楚。为了研究这个问题,我们收集了具有不同最佳生长温度的物种的可用预测的整个蛋白质组序列,并分析了来自相关物种的同源蛋白质对中的氨基酸变异和取代不对称性。我们发现与低温适应相关的氨基酸组成变化相比,与低温适应相关的氨基酸组成变化没有表现出一致的相反趋势。该结果表明,在蛋白质的氨基酸组成变化方面,在其进化史上,与暴露于低温环境的原核生物相关的蛋白质组规模的进化模式与与暴露于高温环境的原核生物相关的蛋白质组规模的进化模式不同。 。

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