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Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics

Several bacteria are able to degrade the major industrial solvent dichloromethane (DCM) by using the conserved dehalogenase DcmA, the only system for DCM degradation characterised at the sequence level so far. Using differential proteomics, we rapidly identified key determinants of DCM degradation f...

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Autores principales: Hayoun, Karim, Geersens, Emilie, Laczny, Cédric C., Halder, Rashi, Lázaro Sánchez, Carmen, Manna, Abhijit, Bringel, Françoise, Ryckelynck, Michaël, Wilmes, Paul, Muller, Emilie E. L., Alpha-Bazin, Béatrice, Armengaud, Jean, Vuilleumier, Stéphane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760279/
https://www.ncbi.nlm.nih.gov/pubmed/33260855
http://dx.doi.org/10.3390/microorganisms8121876
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author Hayoun, Karim
Geersens, Emilie
Laczny, Cédric C.
Halder, Rashi
Lázaro Sánchez, Carmen
Manna, Abhijit
Bringel, Françoise
Ryckelynck, Michaël
Wilmes, Paul
Muller, Emilie E. L.
Alpha-Bazin, Béatrice
Armengaud, Jean
Vuilleumier, Stéphane
author_facet Hayoun, Karim
Geersens, Emilie
Laczny, Cédric C.
Halder, Rashi
Lázaro Sánchez, Carmen
Manna, Abhijit
Bringel, Françoise
Ryckelynck, Michaël
Wilmes, Paul
Muller, Emilie E. L.
Alpha-Bazin, Béatrice
Armengaud, Jean
Vuilleumier, Stéphane
author_sort Hayoun, Karim
collection PubMed
description Several bacteria are able to degrade the major industrial solvent dichloromethane (DCM) by using the conserved dehalogenase DcmA, the only system for DCM degradation characterised at the sequence level so far. Using differential proteomics, we rapidly identified key determinants of DCM degradation for Hyphomicrobium sp. MC8b, an unsequenced facultative methylotrophic DCM-degrading strain. For this, we designed a pan-proteomics database comprising the annotated genome sequences of 13 distinct Hyphomicrobium strains. Compared to growth with methanol, growth with DCM induces drastic changes in the proteome of strain MC8b. Dichloromethane dehalogenase DcmA was detected by differential pan-proteomics, but only with poor sequence coverage, suggesting atypical characteristics of the DCM dehalogenation system in this strain. More peptides were assigned to DcmA by error-tolerant search, warranting subsequent sequencing of the genome of strain MC8b, which revealed a highly divergent set of dcm genes in this strain. This suggests that the dcm enzymatic system is less strongly conserved than previously believed, and that substantial molecular evolution of dcm genes has occurred beyond their horizontal transfer in the bacterial domain. Our study showed the power of pan-proteomics for quick characterization of new strains belonging to branches of the Tree of Life that are densely genome-sequenced.
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spelling pubmed-77602792020-12-26 Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics Hayoun, Karim Geersens, Emilie Laczny, Cédric C. Halder, Rashi Lázaro Sánchez, Carmen Manna, Abhijit Bringel, Françoise Ryckelynck, Michaël Wilmes, Paul Muller, Emilie E. L. Alpha-Bazin, Béatrice Armengaud, Jean Vuilleumier, Stéphane Microorganisms Article Several bacteria are able to degrade the major industrial solvent dichloromethane (DCM) by using the conserved dehalogenase DcmA, the only system for DCM degradation characterised at the sequence level so far. Using differential proteomics, we rapidly identified key determinants of DCM degradation for Hyphomicrobium sp. MC8b, an unsequenced facultative methylotrophic DCM-degrading strain. For this, we designed a pan-proteomics database comprising the annotated genome sequences of 13 distinct Hyphomicrobium strains. Compared to growth with methanol, growth with DCM induces drastic changes in the proteome of strain MC8b. Dichloromethane dehalogenase DcmA was detected by differential pan-proteomics, but only with poor sequence coverage, suggesting atypical characteristics of the DCM dehalogenation system in this strain. More peptides were assigned to DcmA by error-tolerant search, warranting subsequent sequencing of the genome of strain MC8b, which revealed a highly divergent set of dcm genes in this strain. This suggests that the dcm enzymatic system is less strongly conserved than previously believed, and that substantial molecular evolution of dcm genes has occurred beyond their horizontal transfer in the bacterial domain. Our study showed the power of pan-proteomics for quick characterization of new strains belonging to branches of the Tree of Life that are densely genome-sequenced. MDPI 2020-11-27 /pmc/articles/PMC7760279/ /pubmed/33260855 http://dx.doi.org/10.3390/microorganisms8121876 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hayoun, Karim
Geersens, Emilie
Laczny, Cédric C.
Halder, Rashi
Lázaro Sánchez, Carmen
Manna, Abhijit
Bringel, Françoise
Ryckelynck, Michaël
Wilmes, Paul
Muller, Emilie E. L.
Alpha-Bazin, Béatrice
Armengaud, Jean
Vuilleumier, Stéphane
Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics
title Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics
title_full Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics
title_fullStr Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics
title_full_unstemmed Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics
title_short Dichloromethane Degradation Pathway from Unsequenced Hyphomicrobium sp. MC8b Rapidly Explored by Pan-Proteomics
title_sort dichloromethane degradation pathway from unsequenced hyphomicrobium sp. mc8b rapidly explored by pan-proteomics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7760279/
https://www.ncbi.nlm.nih.gov/pubmed/33260855
http://dx.doi.org/10.3390/microorganisms8121876
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