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Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5

Recently, we found that Alcanivorax bacteria from various marine environments were capable of degrading halogenated alkanes. Genome sequencing of A. dieselolei B-5 revealed two putative haloalkane dehalogenase (HLD) genes, which were supposed to be involved in degradation of halogenated compounds. I...

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Autores principales: Li, Anzhang, Shao, Zongze
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3938430/
https://www.ncbi.nlm.nih.gov/pubmed/24586552
http://dx.doi.org/10.1371/journal.pone.0089144
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author Li, Anzhang
Shao, Zongze
author_facet Li, Anzhang
Shao, Zongze
author_sort Li, Anzhang
collection PubMed
description Recently, we found that Alcanivorax bacteria from various marine environments were capable of degrading halogenated alkanes. Genome sequencing of A. dieselolei B-5 revealed two putative haloalkane dehalogenase (HLD) genes, which were supposed to be involved in degradation of halogenated compounds. In this report, we confirm for the first time that the Alcanivorax bacterium encodes a truly functional HLD named DadB. An activity assay with 46 halogenated substrates indicated that DadB possesses broad substrate range and has the highest overall activity among the identified HLDs. DadB prefers brominated substrates; chlorinated alkenes; and the C(2)-C(3) substrates, including the persistent pollutants of 1,2-dichloroethane, 1,2-dichloropropane and 1,2,3-trichloropropane. As DadB displays no detectable activity toward long-chain haloalkanes such as 1-chlorohexadecane and 1-chlorooctadecane, the degradation of them in A. dieselolei B-5 might be attributed to other enzymes. Kinetic constants were determined with 6 substrates. DadB has highest affinity and largest k (cat)/K (m) value toward 1,3-dibromopropane (K (m) = 0.82 mM, k (cat)/K (m) = 16.43 mM(−1)·s(−1)). DadB aggregates fast in the buffers with pH≤7.0, while keeps stable in monomer form when pH≥7.5. According to homology modeling, DadB has an open active cavity with a large access tunnel, which is supposed important for larger molecules as opposed to C(2)-C(3) substrates. Combined with the results for other HLDs, we deduce that residue I247 plays an important role in substrate selection. These results suggest that DadB and its host, A. dieselolei B-5, are of potential use for biocatalysis and bioremediation applications.
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spelling pubmed-39384302014-03-04 Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5 Li, Anzhang Shao, Zongze PLoS One Research Article Recently, we found that Alcanivorax bacteria from various marine environments were capable of degrading halogenated alkanes. Genome sequencing of A. dieselolei B-5 revealed two putative haloalkane dehalogenase (HLD) genes, which were supposed to be involved in degradation of halogenated compounds. In this report, we confirm for the first time that the Alcanivorax bacterium encodes a truly functional HLD named DadB. An activity assay with 46 halogenated substrates indicated that DadB possesses broad substrate range and has the highest overall activity among the identified HLDs. DadB prefers brominated substrates; chlorinated alkenes; and the C(2)-C(3) substrates, including the persistent pollutants of 1,2-dichloroethane, 1,2-dichloropropane and 1,2,3-trichloropropane. As DadB displays no detectable activity toward long-chain haloalkanes such as 1-chlorohexadecane and 1-chlorooctadecane, the degradation of them in A. dieselolei B-5 might be attributed to other enzymes. Kinetic constants were determined with 6 substrates. DadB has highest affinity and largest k (cat)/K (m) value toward 1,3-dibromopropane (K (m) = 0.82 mM, k (cat)/K (m) = 16.43 mM(−1)·s(−1)). DadB aggregates fast in the buffers with pH≤7.0, while keeps stable in monomer form when pH≥7.5. According to homology modeling, DadB has an open active cavity with a large access tunnel, which is supposed important for larger molecules as opposed to C(2)-C(3) substrates. Combined with the results for other HLDs, we deduce that residue I247 plays an important role in substrate selection. These results suggest that DadB and its host, A. dieselolei B-5, are of potential use for biocatalysis and bioremediation applications. Public Library of Science 2014-02-28 /pmc/articles/PMC3938430/ /pubmed/24586552 http://dx.doi.org/10.1371/journal.pone.0089144 Text en © 2014 Li, Shao http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Li, Anzhang
Shao, Zongze
Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5
title Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5
title_full Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5
title_fullStr Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5
title_full_unstemmed Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5
title_short Biochemical Characterization of a Haloalkane Dehalogenase DadB from Alcanivorax dieselolei B-5
title_sort biochemical characterization of a haloalkane dehalogenase dadb from alcanivorax dieselolei b-5
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3938430/
https://www.ncbi.nlm.nih.gov/pubmed/24586552
http://dx.doi.org/10.1371/journal.pone.0089144
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