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Dive into the research topics where Géraldine Florence Buttet is active.

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Featured researches published by Géraldine Florence Buttet.


Environmental Science & Technology | 2014

Multiple dual C-Cl isotope patterns associated with reductive dechlorination of tetrachloroethene.

Alice Badin; Géraldine Florence Buttet; Julien Maillard; Christof Holliger; Daniel Hunkeler

Dual isotope slopes are increasingly used to identify transformation pathways of contaminants. We investigated if reductive dechlorination of tetrachloroethene (PCE) by consortia containing bacteria with different reductive dehalogenases (rdhA) genes can lead to variable dual C-Cl isotope slopes and if different slopes also occur in the field. Two bacterial enrichments harboring Sulfurospirillum spp. but different rdhA genes yielded two distinct δ(13)C to δ(37)Cl slopes of 2.7 ± 0.3 and 0.7 ± 0.2 despite a high similarity in gene sequences. This suggests that PCE reductive dechlorination could be catalyzed according to at least two distinct reaction mechanisms or that rate-limiting steps might vary. At two field sites, two distinct dual isotope slopes of 0.7 ± 0.3 and 3.5 ± 1.6 were obtained, each of which fits one of the laboratory slopes within the range of uncertainty. This study hence provides additional insight into multiple reaction mechanisms underlying PCE reductive dechlorination. It also demonstrates that caution is necessary if a dual isotope approach is used to differentiate between transformation pathways of chlorinated ethenes.


Applied and Environmental Microbiology | 2013

Functional genotyping of Sulfurospirillum spp. in mixed cultures allowed the identification of a new tetrachloroethene reductive dehalogenase

Géraldine Florence Buttet; Christof Holliger; Julien Maillard

ABSTRACT Reductive dehalogenases are the key enzymes involved in the anaerobic respiration of organohalides such as the widespread groundwater pollutant tetrachloroethene. The increasing number of available bacterial genomes and metagenomes gives access to hundreds of new putative reductive dehalogenase genes that display a high level of sequence diversity and for which substrate prediction remains very challenging. In this study, we present the development of a functional genotyping method targeting the diverse reductive dehalogenases present in Sulfurospirillum spp., which allowed us to unambiguously identify a new reductive dehalogenase from our tetrachloroethene-dechlorinating SL2 bacterial consortia. The new enzyme, named PceATCE, shows 92% sequence identity with the well-characterized PceA enzyme of Sulfurospirillum multivorans, but in contrast to the latter, it is restricted to tetrachloroethene as a substrate. Its apparent higher dechlorinating activity with tetrachloroethene likely allowed its selection and maintenance in the bacterial consortia among other enzymes showing broader substrate ranges. The sequence-substrate relationships within tetrachloroethene reductive dehalogenases are also discussed.


Frontiers in Microbiology | 2018

The membrane-bound C subunit of reductive dehalogenases: topology analysis and reconstitution of the FMN-binding domain of PceC

Géraldine Florence Buttet; Mathilde Stéphanie Willemin; Romain Hamelin; Aamani Rupakula; Julien Maillard

Organohalide respiration (OHR) is the energy metabolism of anaerobic bacteria able to use halogenated organic compounds as terminal electron acceptors. While the terminal enzymes in OHR, so-called reductive dehalogenases, are well-characterized, the identity of proteins potentially involved in electron transfer to the terminal enzymes remains elusive. Among the accessory genes identified in OHR gene clusters, the C subunit (rdhC) could well code for the missing redox protein between the quinol pool and the reductive dehalogenase, although it was initially proposed to act as transcriptional regulator. RdhC sequences are characterized by the presence of multiple transmembrane segments, a flavin mononucleotide (FMN) binding motif and two conserved CX3CP motifs. Based on these features, we propose a curated selection of RdhC proteins identified in general sequence databases. Beside the Firmicutes from which RdhC sequences were initially identified, the identified sequences belong to three additional phyla, the Chloroflexi, the Proteobacteria, and the Bacteriodetes. The diversity of RdhC sequences mostly respects the phylogenetic distribution, suggesting that rdhC genes emerged relatively early in the evolution of the OHR metabolism. PceC, the C subunit of the tetrachloroethene (PCE) reductive dehalogenase is encoded by the conserved pceABCT gene cluster identified in Dehalobacter restrictus PER-K23 and in several strains of Desulfitobacterium hafniense. Surfaceome analysis of D. restrictus cells confirmed the predicted topology of the FMN-binding domain (FBD) of PceC that is the exocytoplasmic face of the membrane. Starting from inclusion bodies of a recombinant FBD protein, strategies for successful assembly of the FMN cofactor and refolding were achieved with the use of the flavin-trafficking protein from D. hafniense TCE1. Mass spectrometry analysis and site-directed mutagenesis of rFBD revealed that threonine-168 of PceC is binding FMN covalently. Our results suggest that PceC, and more generally RdhC proteins, may play a role in electron transfer in the metabolism of OHR.


FEMS Microbiology Ecology | 2018

Coexistence of two distinct Sulfurospirillum populations respiring tetrachloroethene—genomic and kinetic considerations

Géraldine Florence Buttet; Alexandra Marie Murray; Tobias Goris; Mélissa Burion; Jin Biao; Massimo Rolle; Christof Holliger; Julien Maillard


DehaloCon II - A Conference on Anaerobic Biological Dehalogenation | 2017

Kinetic considerations of two Sulfurospirillum spp. competing for tetrachloroethene

Géraldine Florence Buttet; Alexandra Marie Murray; Mélissa Burion; Christof Holliger; Julien Maillard


Annual Meeting and Assembly of the Swiss Society of Microbiology | 2015

Characterization of the action of the molecular chaperone PceT on the reductive dehalogenase PceA

Coranthin Grob; Fabio Palmieri; Géraldine Florence Buttet; Julien Maillard


Annual Meeting and Assembly of the Swiss Society of Microbiology | 2015

Desulfitobacterium hafniense TCE1 membrane proteomics

Géraldine Florence Buttet; Romain Hamelin; Florence Armand; Christof Holliger; Julien Maillard


6th Congress of European Microbiologists (FEMS 2015) | 2015

Action of Molecular Chaperones dedicated to the maturation of Reductive Dehalogenases

Coranthin Grob; Fabio Palmieri; Géraldine Florence Buttet; Julien Maillard


DehaloCon - A Conference on Anaerobic Biological Dehalogenation | 2014

Functional characterization of a new tetrachloroethene reductive dehalogenase of Sulfurospirillum spp. identified in mixed cultures

Géraldine Florence Buttet; Cindy Kunze; Torsten Schubert; Gabriele Diekert; Christof Holliger; Julien Maillard


The 6th Swiss Molecular Microbiology Meeting (SWIMM 2012) | 2012

Functional diversity of reductive dehalogenases in a bacterial consortium degrading chloroethenes

Géraldine Florence Buttet; Christof Holliger; Julien Maillard

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Julien Maillard

École Polytechnique Fédérale de Lausanne

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Christof Holliger

École Polytechnique Fédérale de Lausanne

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Mélissa Burion

École Polytechnique Fédérale de Lausanne

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Romain Hamelin

École Polytechnique Fédérale de Lausanne

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Alexandra Marie Murray

Technical University of Denmark

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Aamani Rupakula

École Polytechnique Fédérale de Lausanne

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Alice Badin

University of Neuchâtel

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Florence Armand

École Polytechnique Fédérale de Lausanne

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Mathilde Stéphanie Willemin

École Polytechnique Fédérale de Lausanne

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