Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, Worcester, United States.
Instituto Gulbenkian de Ciência, Oeiras, Portugal.
Elife. 2020 Mar 4;9:e53810. doi: 10.7554/eLife.53810.
Gene-environment interactions have long been theorized to influence molecular evolution. However, the environmental dependence of most mutations remains unknown. Using deep mutational scanning, we engineered yeast with all 44,604 single codon changes encoding 14,160 amino acid variants in Hsp90 and quantified growth effects under standard conditions and under five stress conditions. To our knowledge, these are the largest determined comprehensive fitness maps of point mutants. The growth of many variants differed between conditions, indicating that environment can have a large impact on Hsp90 evolution. Multiple variants provided growth advantages under individual conditions; however, these variants tended to exhibit growth defects in other environments. The diversity of Hsp90 sequences observed in extant eukaryotes preferentially contains variants that supported robust growth under all tested conditions. Rather than favoring substitutions in individual conditions, the long-term selective pressure on Hsp90 may have been that of fluctuating environments, leading to robustness under a variety of conditions.
基因-环境相互作用长期以来被认为会影响分子进化。然而,大多数突变的环境依赖性仍然未知。我们使用深度突变扫描技术,在酵母中设计了所有 44604 个单密码子变化,这些变化编码了 Hsp90 中的 14160 个氨基酸变体,并在标准条件和五种应激条件下定量了生长效应。据我们所知,这些是迄今为止确定的最大的点突变综合适合度图谱。许多变体在不同条件下的生长情况不同,这表明环境对 Hsp90 进化有很大影响。多个变体在个别条件下提供了生长优势;然而,这些变体在其他环境中往往表现出生长缺陷。在现存真核生物中观察到的 Hsp90 序列的多样性优先包含在所有测试条件下都能支持稳健生长的变体。长期以来,Hsp90 的选择压力可能不是单一条件下的选择,而是波动环境的选择,从而在各种条件下具有稳健性。