An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape

Экспериментальное исследование взаимодействий аминокислот из ортологичных последовательностей, формирующих сложный ландшафт приспособленности
Victoria O. Pokusaeva, Dinara R. Usmanova, Ekaterina V. Putintseva, Lorena Espinar, Karen S. Sarkisyan, Alexander S. Mishin, Natalya S. Bogatyreva, Dmitry N. Ivankov, Arseniy Akopyan, Sergey Ya. Avvakumov, Inna Povolotskaya, Guillaume J. Filion, Lucas B. Carey, Fyodor A. Kondrashov
2019-04-10

His3 enzymefitness landscapeorthologous sequencesreciprocal sign epistasissign epistasis
Characterizing the fitness landscape, a representation of fitness for a large set of genotypes, is key to understanding how genetic information is interpreted to create functional organisms. Here we determined the evolutionarily-relevant segment of the fitness landscape of His3, a gene coding for an enzyme in the histidine synthesis pathway, focusing on combinations of amino acid states found at orthologous sites of extant species. Just 15% of amino acids found in yeast His3 orthologues were always neutral while the impact on fitness of the remaining 85% depended on the genetic background. Furthermore, at 67% of sites, amino acid replacements were under sign epistasis, having both strongly positive and negative effect in different genetic backgrounds. 46% of sites were under reciprocal sign epistasis. The fitness impact of amino acid replacements was influenced by only a few genetic backgrounds but involved interaction of multiple sites, shaping a rugged fitness landscape in which many of the shortest paths between highly fit genotypes are inaccessible.
1
Although only a few genetic backgrounds influenced replacement effects, interactions among multiple sites produced a rugged landscape where many shortest paths between highly fit genotypes were inaccessible.
2
At 67% of sites, amino-acid replacements exhibited sign epistasis, showing strongly positive effects in some backgrounds and negative effects in others.
3
Only 15% of amino acids in yeast His3 orthologues were consistently neutral; fitness effects of the remaining 85% depended on genetic background.
4
Reciprocal sign epistasis affected 46% of sites, indicating widespread context-dependent reversals in replacement effects.
5
The study experimentally mapped the evolutionarily relevant His3 fitness landscape using amino-acid combinations observed at orthologous sites in extant species.

His3 amino acid sequences and their associated genotypes from yeast orthologues

Context-dependent fitness effects and epistatic interactions among amino acid replacements shaping the rugged fitness landscape of His3

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2019-04-10
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Victoria O. Pokusaeva
Dinara R. Usmanova
Ekaterina V. Putintseva
Lorena Espinar
Karen S. Sarkisyan
Alexander S. Mishin
Natalya S. Bogatyreva
Dmitry N. Ivankov
Arseniy Akopyan
Sergey Ya. Avvakumov
Inna Povolotskaya
Guillaume J. Filion
Lucas B. Carey
Fyodor A. Kondrashov
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