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An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape
by
Avvakumov, Sergey Ya
, Akopyan, Arseniy V.
, Usmanova, Dinara R.
, Carey, Lucas B.
, Pokusaeva, Victoria O.
, Putintseva, Ekaterina V.
, Filion, Guillaume J.
, Povolotskaya, Inna S.
, Sarkisyan, Karen S.
, Bogatyreva, Natalya S.
, Espinar, Lorena
, Kondrashov, Fyodor A.
, Ivankov, Dmitry N.
, Mishin, Alexander S.
in
Amino Acid Sequence
/ Amino Acid Substitution
/ Amino acids
/ Amino Acids - genetics
/ Amino Acids - metabolism
/ Bioassay
/ Bioinformatics
/ Biological assay
/ Biology
/ Enzymes
/ Epistasis
/ Epistasis, Genetic
/ Evolution
/ Evolution, Molecular
/ Fitness (Genetics)
/ Funding
/ Fungal Proteins - chemistry
/ Fungal Proteins - genetics
/ Fungal Proteins - metabolism
/ Genes
/ Genes, Fungal
/ Genetic aspects
/ Genetic Fitness
/ Genetic research
/ Genetics
/ Genomes
/ Genomics
/ Genotype
/ Genotype & phenotype
/ Genotypes
/ Histidine
/ Hydro-Lyases - chemistry
/ Hydro-Lyases - genetics
/ Hydro-Lyases - metabolism
/ Laboratories
/ Methods
/ Models, Genetic
/ Models, Molecular
/ Mutation
/ Phylogeny
/ Physiological aspects
/ Proteins
/ Reproductive fitness
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - chemistry
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Software
/ Supervision
/ Yeasts - genetics
/ Yeasts - metabolism
2019
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An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape
by
Avvakumov, Sergey Ya
, Akopyan, Arseniy V.
, Usmanova, Dinara R.
, Carey, Lucas B.
, Pokusaeva, Victoria O.
, Putintseva, Ekaterina V.
, Filion, Guillaume J.
, Povolotskaya, Inna S.
, Sarkisyan, Karen S.
, Bogatyreva, Natalya S.
, Espinar, Lorena
, Kondrashov, Fyodor A.
, Ivankov, Dmitry N.
, Mishin, Alexander S.
in
Amino Acid Sequence
/ Amino Acid Substitution
/ Amino acids
/ Amino Acids - genetics
/ Amino Acids - metabolism
/ Bioassay
/ Bioinformatics
/ Biological assay
/ Biology
/ Enzymes
/ Epistasis
/ Epistasis, Genetic
/ Evolution
/ Evolution, Molecular
/ Fitness (Genetics)
/ Funding
/ Fungal Proteins - chemistry
/ Fungal Proteins - genetics
/ Fungal Proteins - metabolism
/ Genes
/ Genes, Fungal
/ Genetic aspects
/ Genetic Fitness
/ Genetic research
/ Genetics
/ Genomes
/ Genomics
/ Genotype
/ Genotype & phenotype
/ Genotypes
/ Histidine
/ Hydro-Lyases - chemistry
/ Hydro-Lyases - genetics
/ Hydro-Lyases - metabolism
/ Laboratories
/ Methods
/ Models, Genetic
/ Models, Molecular
/ Mutation
/ Phylogeny
/ Physiological aspects
/ Proteins
/ Reproductive fitness
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - chemistry
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Software
/ Supervision
/ Yeasts - genetics
/ Yeasts - metabolism
2019
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An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape
by
Avvakumov, Sergey Ya
, Akopyan, Arseniy V.
, Usmanova, Dinara R.
, Carey, Lucas B.
, Pokusaeva, Victoria O.
, Putintseva, Ekaterina V.
, Filion, Guillaume J.
, Povolotskaya, Inna S.
, Sarkisyan, Karen S.
, Bogatyreva, Natalya S.
, Espinar, Lorena
, Kondrashov, Fyodor A.
, Ivankov, Dmitry N.
, Mishin, Alexander S.
in
Amino Acid Sequence
/ Amino Acid Substitution
/ Amino acids
/ Amino Acids - genetics
/ Amino Acids - metabolism
/ Bioassay
/ Bioinformatics
/ Biological assay
/ Biology
/ Enzymes
/ Epistasis
/ Epistasis, Genetic
/ Evolution
/ Evolution, Molecular
/ Fitness (Genetics)
/ Funding
/ Fungal Proteins - chemistry
/ Fungal Proteins - genetics
/ Fungal Proteins - metabolism
/ Genes
/ Genes, Fungal
/ Genetic aspects
/ Genetic Fitness
/ Genetic research
/ Genetics
/ Genomes
/ Genomics
/ Genotype
/ Genotype & phenotype
/ Genotypes
/ Histidine
/ Hydro-Lyases - chemistry
/ Hydro-Lyases - genetics
/ Hydro-Lyases - metabolism
/ Laboratories
/ Methods
/ Models, Genetic
/ Models, Molecular
/ Mutation
/ Phylogeny
/ Physiological aspects
/ Proteins
/ Reproductive fitness
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - chemistry
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Software
/ Supervision
/ Yeasts - genetics
/ Yeasts - metabolism
2019
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An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape
Journal Article
An experimental assay of the interactions of amino acids from orthologous sequences shaping a complex fitness landscape
2019
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Overview
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.
Publisher
Public Library of Science,Public Library of Science (PLoS)
Subject
/ Bioassay
/ Biology
/ Enzymes
/ Funding
/ Fungal Proteins - metabolism
/ Genes
/ Genetics
/ Genomes
/ Genomics
/ Genotype
/ Methods
/ Mutation
/ Proteins
/ Saccharomyces cerevisiae - genetics
/ Saccharomyces cerevisiae - metabolism
/ Saccharomyces cerevisiae Proteins - chemistry
/ Saccharomyces cerevisiae Proteins - genetics
/ Saccharomyces cerevisiae Proteins - metabolism
/ Software
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