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Comprehensive fitness maps of Hsp90 show widespread environmental dependence.


ABSTRACT: 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.

SUBMITTER: Flynn JM 

PROVIDER: S-EPMC7069724 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Comprehensive fitness maps of Hsp90 show widespread environmental dependence.

Flynn Julia M JM   Rossouw Ammeret A   Cote-Hammarlof Pamela P   Fragata Inês I   Mavor David D   Hollins Carl C   Bank Claudia C   Bolon Daniel Na DN  

eLife 20200304


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  ...[more]

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