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Evolutionary and molecular foundations of multiple contemporary functions of the nitroreductase superfamily
by
Akiva, Eyal
, Tokuriki, Nobuhiko
, Babbitt, Patricia C.
, Copp, Janine N.
in
Biological evolution
/ Biological Sciences
/ Biophysics and Computational Biology
/ Biotechnology
/ Chemical reactions
/ Computational Biology - methods
/ Computer applications
/ Divergence
/ Enzymes
/ Evolution
/ Evolution, Molecular
/ Flavin mononucleotide
/ Flavin Mononucleotide - genetics
/ Models, Molecular
/ Molecules
/ Nitroreductase
/ Nitroreductases - genetics
/ Phylogenetics
/ Phylogeny
/ PNAS Plus
/ Proteins
/ Redesign
/ Scaffolds
/ Software
/ Specialization
/ Structural design
/ Structural engineering
/ Structure-function relationships
/ Subgroups
2017
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Evolutionary and molecular foundations of multiple contemporary functions of the nitroreductase superfamily
by
Akiva, Eyal
, Tokuriki, Nobuhiko
, Babbitt, Patricia C.
, Copp, Janine N.
in
Biological evolution
/ Biological Sciences
/ Biophysics and Computational Biology
/ Biotechnology
/ Chemical reactions
/ Computational Biology - methods
/ Computer applications
/ Divergence
/ Enzymes
/ Evolution
/ Evolution, Molecular
/ Flavin mononucleotide
/ Flavin Mononucleotide - genetics
/ Models, Molecular
/ Molecules
/ Nitroreductase
/ Nitroreductases - genetics
/ Phylogenetics
/ Phylogeny
/ PNAS Plus
/ Proteins
/ Redesign
/ Scaffolds
/ Software
/ Specialization
/ Structural design
/ Structural engineering
/ Structure-function relationships
/ Subgroups
2017
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Do you wish to request the book?
Evolutionary and molecular foundations of multiple contemporary functions of the nitroreductase superfamily
by
Akiva, Eyal
, Tokuriki, Nobuhiko
, Babbitt, Patricia C.
, Copp, Janine N.
in
Biological evolution
/ Biological Sciences
/ Biophysics and Computational Biology
/ Biotechnology
/ Chemical reactions
/ Computational Biology - methods
/ Computer applications
/ Divergence
/ Enzymes
/ Evolution
/ Evolution, Molecular
/ Flavin mononucleotide
/ Flavin Mononucleotide - genetics
/ Models, Molecular
/ Molecules
/ Nitroreductase
/ Nitroreductases - genetics
/ Phylogenetics
/ Phylogeny
/ PNAS Plus
/ Proteins
/ Redesign
/ Scaffolds
/ Software
/ Specialization
/ Structural design
/ Structural engineering
/ Structure-function relationships
/ Subgroups
2017
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Evolutionary and molecular foundations of multiple contemporary functions of the nitroreductase superfamily
Journal Article
Evolutionary and molecular foundations of multiple contemporary functions of the nitroreductase superfamily
2017
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Overview
Insight regarding how diverse enzymatic functions and reactions have evolved from ancestral scaffolds is fundamental to understanding chemical and evolutionary biology, and for the exploitation of enzymes for biotechnology. We undertook an extensive computational analysis using a unique and comprehensive combination of tools that include large-scale phylogenetic reconstruction to determine the sequence, structural, and functional relationships of the functionally diverse flavin mononucleotide-dependent nitroreductase (NTR) superfamily (>24,000 sequences from all domains of life, 54 structures, and >10 enzymatic functions). Our results suggest an evolutionary model in which contemporary subgroups of the superfamily have diverged in a radial manner from a minimal flavin-binding scaffold. We identified the structural design principle for this divergence: Insertions at key positions in the minimal scaffold that, combined with the fixation of key residues, have led to functional specialization. These results will aid future efforts to delineate the emergence of functional diversity in enzyme superfamilies, provide clues for functional inference for superfamily members of unknown function, and facilitate rational redesign of the NTR scaffold.
Publisher
National Academy of Sciences
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