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Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies

The D-2-haloacid dehalogenase of D-specific dehalogenase (DehD) from Rhizobium sp. RC1 catalyses the hydrolytic dehalogenation of D-haloalkanoic acids, inverting the substrate-product configuration and thereby forming the corresponding L-hydroxyalkanoic acids. Our investigations were focused on DehD...

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Autores principales: Sudi, Ismaila Yada, Shamsir, Mohd Shahir, Jamaluddin, Haryati, Wahab, Roswanira Abdul, Huyop, Fahrul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4433833/
https://www.ncbi.nlm.nih.gov/pubmed/26019583
http://dx.doi.org/10.1080/13102818.2014.960663
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author Sudi, Ismaila Yada
Shamsir, Mohd Shahir
Jamaluddin, Haryati
Wahab, Roswanira Abdul
Huyop, Fahrul
author_facet Sudi, Ismaila Yada
Shamsir, Mohd Shahir
Jamaluddin, Haryati
Wahab, Roswanira Abdul
Huyop, Fahrul
author_sort Sudi, Ismaila Yada
collection PubMed
description The D-2-haloacid dehalogenase of D-specific dehalogenase (DehD) from Rhizobium sp. RC1 catalyses the hydrolytic dehalogenation of D-haloalkanoic acids, inverting the substrate-product configuration and thereby forming the corresponding L-hydroxyalkanoic acids. Our investigations were focused on DehD mutants: R134A and Y135A. We examined the possible interactions between these mutants with haloalkanoic acids and characterized the key catalytic residues in the wild-type dehalogenase, to design dehalogenase enzyme(s) with improved potential for dehalogenation of a wider range of substrates. Three natural substrates of wild-type DehD, specifically, monochloroacetate, monobromoacetate and D,L-2,3-dichloropropionate, and eight other non-natural haloalkanoic acids substrates of DehD, namely, L-2-chloropropionate; L-2-bromopropionate; 2,2-dichloropropionate; dichloroacetate; dibromoacetate; trichloroacetate; tribromoacetate; and 3-chloropropionate, were docked into the active site of the DehD mutants R134A and Y135A, which produced altered catalytic functions. The mutants interacted strongly with substrates that wild-type DehD does not interact with or degrade. The interaction was particularly enhanced with 3-chloropropionate, in addition to monobromoacetate, monochloroacetate and D,L-2,3-dichloropropionate. In summary, DehD variants R134A and Y135A demonstrated increased propensity for binding haloalkanoic acid and were non-stereospecific towards halogenated substrates. The improved characteristics in these mutants suggest that their functionality could be further exploited and harnessed in bioremediations and biotechnological applications.
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spelling pubmed-44338332015-05-25 Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies Sudi, Ismaila Yada Shamsir, Mohd Shahir Jamaluddin, Haryati Wahab, Roswanira Abdul Huyop, Fahrul Biotechnol Biotechnol Equip Article; Bioinformatics The D-2-haloacid dehalogenase of D-specific dehalogenase (DehD) from Rhizobium sp. RC1 catalyses the hydrolytic dehalogenation of D-haloalkanoic acids, inverting the substrate-product configuration and thereby forming the corresponding L-hydroxyalkanoic acids. Our investigations were focused on DehD mutants: R134A and Y135A. We examined the possible interactions between these mutants with haloalkanoic acids and characterized the key catalytic residues in the wild-type dehalogenase, to design dehalogenase enzyme(s) with improved potential for dehalogenation of a wider range of substrates. Three natural substrates of wild-type DehD, specifically, monochloroacetate, monobromoacetate and D,L-2,3-dichloropropionate, and eight other non-natural haloalkanoic acids substrates of DehD, namely, L-2-chloropropionate; L-2-bromopropionate; 2,2-dichloropropionate; dichloroacetate; dibromoacetate; trichloroacetate; tribromoacetate; and 3-chloropropionate, were docked into the active site of the DehD mutants R134A and Y135A, which produced altered catalytic functions. The mutants interacted strongly with substrates that wild-type DehD does not interact with or degrade. The interaction was particularly enhanced with 3-chloropropionate, in addition to monobromoacetate, monochloroacetate and D,L-2,3-dichloropropionate. In summary, DehD variants R134A and Y135A demonstrated increased propensity for binding haloalkanoic acid and were non-stereospecific towards halogenated substrates. The improved characteristics in these mutants suggest that their functionality could be further exploited and harnessed in bioremediations and biotechnological applications. Taylor & Francis 2014-09-03 2014-10-30 /pmc/articles/PMC4433833/ /pubmed/26019583 http://dx.doi.org/10.1080/13102818.2014.960663 Text en © 2014 The Author(s). Published by Taylor & Francis. http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/3.0/, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Article; Bioinformatics
Sudi, Ismaila Yada
Shamsir, Mohd Shahir
Jamaluddin, Haryati
Wahab, Roswanira Abdul
Huyop, Fahrul
Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies
title Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies
title_full Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies
title_fullStr Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies
title_full_unstemmed Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies
title_short Interactions of non-natural halogenated substrates with D-specific dehalogenase (DehD) mutants using in silico studies
title_sort interactions of non-natural halogenated substrates with d-specific dehalogenase (dehd) mutants using in silico studies
topic Article; Bioinformatics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4433833/
https://www.ncbi.nlm.nih.gov/pubmed/26019583
http://dx.doi.org/10.1080/13102818.2014.960663
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