Project information
Evolution of substrate specificity in enzymes acting on xenobiotic compounds
- Project Identification
- IAA401630901
- Project Period
- 1/2009 - 12/2013
- Investor / Pogramme / Project type
-
Academy of Sciences of the Czech Republic
- Grants of distinctly investigative character focused on the sphere of research pursued at present particularly in the ASCR
- MU Faculty or unit
- Faculty of Science
- Keywords
- evolution; enzymes; dehalogenation; multivariate statistics; substrate specificity; molecular modelling; virtual screening; QSAR and 3D QSAR
The main objective of this project is to study evolution of substrate specificity in microbial enzymes acting on xenobiotic compounds. Selected model system, haloalkane dehalogenases, is suitable for this purpose since these enzymes act on recalcitrant compounds which have not been available in the biosphere until industrial revolution. Evolution will be studied recursively by quantitative characterization of the substrate specificity of modern haloalkane dehalogenases and their comparison with ancestral enzymes designed by phylogenetic inference and constructed by gene synthesis. The ultimate goal will be estimation of the level of functional overlap of individual protein subfamilies and dissecting molecular events leading to specialization of enzymes for efficient catalysis of their xenobiotic substrates. Various theoretical and experimental approaches will be employed to obtain appropriate biological material and collect data for testing of alternative evolutionary hypotheses.
Publications
Total number of publications: 67
2013
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Immobilization of Haloalkane Dehalogenase LinB from Sphingobium japonicum UT26 for Biotechnological Applications
Journal of Biocatalysis & Biotransformation, year: 2013, volume: 2, edition: 2
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Interaction of Organic Solvents with Protein Structures at Protein-Solvent Interface
Journal of Molecular Modeling, year: 2013, volume: 19, edition: 11, DOI
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Miniaturizovaný příruční fluorimetr
Year: 2013
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Novosphingobium barchaimii sp nov., isolated from hexachlorocyclohexane-contaminated soil
International Journal of Systematic and Evolutionary Microbiology, year: 2013, volume: 63, edition: Part 2, DOI
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Organic Co-solvents Affect Activity, Stability and Enantioselectivity of Haloalkane Dehalogenases
Biotechnology Journal, year: 2013, volume: 8, edition: 6, DOI
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PredictSNP 1.0
Year: 2013
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Rekombinantní enzym haloalkan dehalogenáza DatA.
Year: 2013
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Rekombinantní enzym haloalkan dehalogenáza DspA.
Year: 2013
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Software tools for identification, visualization and analysis of protein tunnels and channels
BIOTECHNOLOGY ADVANCES, year: 2013, volume: 31, edition: 1, DOI
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Sphingobium baderi sp nov., isolated from a hexachlorocyclohexane dump site
International Journal of Systematic and Evolutionary Microbiology, year: 2013, volume: 63, edition: Part 2, DOI