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Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)

The enzymes involved in synthesizing the bacterial cell wall are attractive targets for the design of antibacterial compounds, since this pathway is essential for bacteria and is absent in animals, particularly humans. A survey of the genome of a bacterium that belongs to the phylum Verrucomicrobia,...

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Autores principales: Naqvi, Kubra F., Patin, Delphine, Wheatley, Matthew S., Savka, Michael A., Dobson, Renwick C. J., Gan, Han Ming, Barreteau, Hélène, Blanot, Didier, Mengin-Lecreulx, Dominique, Hudson, André O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4803751/
https://www.ncbi.nlm.nih.gov/pubmed/27047475
http://dx.doi.org/10.3389/fmicb.2016.00362
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author Naqvi, Kubra F.
Patin, Delphine
Wheatley, Matthew S.
Savka, Michael A.
Dobson, Renwick C. J.
Gan, Han Ming
Barreteau, Hélène
Blanot, Didier
Mengin-Lecreulx, Dominique
Hudson, André O.
author_facet Naqvi, Kubra F.
Patin, Delphine
Wheatley, Matthew S.
Savka, Michael A.
Dobson, Renwick C. J.
Gan, Han Ming
Barreteau, Hélène
Blanot, Didier
Mengin-Lecreulx, Dominique
Hudson, André O.
author_sort Naqvi, Kubra F.
collection PubMed
description The enzymes involved in synthesizing the bacterial cell wall are attractive targets for the design of antibacterial compounds, since this pathway is essential for bacteria and is absent in animals, particularly humans. A survey of the genome of a bacterium that belongs to the phylum Verrucomicrobia, the closest free-living relative to bacteria from the Chlamydiales phylum, shows genetic evidence that Verrucomicrobium spinosum possesses a novel fusion open reading frame (ORF) annotated by the locus tag (VspiD_010100018130). The ORF, which is predicted to encode the enzymes UDP-N-acetylenolpyruvoylglucosamine reductase (MurB) and UDP-N-acetylmuramate:l-alanine ligase (MurC) that are involved in the cytoplasmic steps of peptidoglycan biosynthesis, was cloned. In vivo analyses using functional complementation showed that the fusion gene was able to complement Escherichia coli murB and murC temperature sensitive mutants. The purified recombinant fusion enzyme (MurB/C(Vs)) was shown to be endowed with UDP-N-acetylmuramate:l-alanine ligase activity. In vitro analyses demonstrated that the latter enzyme had a pH optimum of 9.0, a magnesium optimum of 10 mM and a temperature optimum of 44–46°C. Its apparent K(m) values for ATP, UDP-MurNAc, and l-alanine were 470, 90, and 25 μM, respectively. However, all attempts to demonstrate an in vitro UDP-N-acetylenolpyruvoylglucosamine reductase (MurB) activity were unsuccessful. Lastly, Hidden Markov Model-based similarity search and phylogenetic analysis revealed that this fusion enzyme could only be identified in specific lineages within the Verrucomicrobia phylum.
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spelling pubmed-48037512016-04-04 Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T) Naqvi, Kubra F. Patin, Delphine Wheatley, Matthew S. Savka, Michael A. Dobson, Renwick C. J. Gan, Han Ming Barreteau, Hélène Blanot, Didier Mengin-Lecreulx, Dominique Hudson, André O. Front Microbiol Microbiology The enzymes involved in synthesizing the bacterial cell wall are attractive targets for the design of antibacterial compounds, since this pathway is essential for bacteria and is absent in animals, particularly humans. A survey of the genome of a bacterium that belongs to the phylum Verrucomicrobia, the closest free-living relative to bacteria from the Chlamydiales phylum, shows genetic evidence that Verrucomicrobium spinosum possesses a novel fusion open reading frame (ORF) annotated by the locus tag (VspiD_010100018130). The ORF, which is predicted to encode the enzymes UDP-N-acetylenolpyruvoylglucosamine reductase (MurB) and UDP-N-acetylmuramate:l-alanine ligase (MurC) that are involved in the cytoplasmic steps of peptidoglycan biosynthesis, was cloned. In vivo analyses using functional complementation showed that the fusion gene was able to complement Escherichia coli murB and murC temperature sensitive mutants. The purified recombinant fusion enzyme (MurB/C(Vs)) was shown to be endowed with UDP-N-acetylmuramate:l-alanine ligase activity. In vitro analyses demonstrated that the latter enzyme had a pH optimum of 9.0, a magnesium optimum of 10 mM and a temperature optimum of 44–46°C. Its apparent K(m) values for ATP, UDP-MurNAc, and l-alanine were 470, 90, and 25 μM, respectively. However, all attempts to demonstrate an in vitro UDP-N-acetylenolpyruvoylglucosamine reductase (MurB) activity were unsuccessful. Lastly, Hidden Markov Model-based similarity search and phylogenetic analysis revealed that this fusion enzyme could only be identified in specific lineages within the Verrucomicrobia phylum. Frontiers Media S.A. 2016-03-23 /pmc/articles/PMC4803751/ /pubmed/27047475 http://dx.doi.org/10.3389/fmicb.2016.00362 Text en Copyright © 2016 Naqvi, Patin, Wheatley, Savka, Dobson, Gan, Barreteau, Blanot, Mengin-Lecreulx and Hudson. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Naqvi, Kubra F.
Patin, Delphine
Wheatley, Matthew S.
Savka, Michael A.
Dobson, Renwick C. J.
Gan, Han Ming
Barreteau, Hélène
Blanot, Didier
Mengin-Lecreulx, Dominique
Hudson, André O.
Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)
title Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)
title_full Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)
title_fullStr Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)
title_full_unstemmed Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)
title_short Identification and Partial Characterization of a Novel UDP-N-Acetylenolpyruvoylglucosamine Reductase/UDP-N-Acetylmuramate:l-Alanine Ligase Fusion Enzyme from Verrucomicrobium spinosum DSM 4136(T)
title_sort identification and partial characterization of a novel udp-n-acetylenolpyruvoylglucosamine reductase/udp-n-acetylmuramate:l-alanine ligase fusion enzyme from verrucomicrobium spinosum dsm 4136(t)
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4803751/
https://www.ncbi.nlm.nih.gov/pubmed/27047475
http://dx.doi.org/10.3389/fmicb.2016.00362
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