Timeline

Tarek Msadek
Group Leader
05 May 2022
publication

Natural transformation allows transfer of SCCmec-mediated methicillin resistance in Staphylococcus aureus biofilms.

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18 Dec 2018
publication

CtsR, the Master Regulator of Stress-Response in , Is a Heat Sensor Interacting With ClpL1

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18 Sep 2018
publication

Inhibition of Rho Activity Increases Expression of SaeRS-Dependent Virulence Factor Genes in Staphylococcus aureus, Showing a Link between Transcription Termination, Antibiotic Action, and Virulence

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15 Mar 2018
publication

SpdC, a novel virulence factor, controls histidine kinase activity in Staphylococcus aureus

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10 Mar 2017
publication

Methodology for the Study of Horizontal Gene Transfer in Staphylococcus aureus

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02 Apr 2016
publication

Staphylococcus aureus transcriptome architecture: from laboratory to infection-mimicking conditions

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01 Mar 2016
publication

Transcriptional Analysis and Subcellular Protein Localization Reveal Specific Features of the Essential WalKR System in Staphylococcus aureus

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09 Oct 2015
publication

The Antisense RNA Approach: a New Application for In Vivo Investigation of the Stress Response of Oenococcus oeni, a Wine-Associated Lactic Acid Bacterium

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11 May 2015
team

Biology of Gram-Positive Pathogens

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08 Nov 2012
publication

Expression of a cryptic secondary sigma factor gene unveils natural competence for DNA transformation in Staphylococcus aureus

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23 Jul 2012
publication

The WalKR system controls major staphylococcal virulence genes and is involved in triggering the host inflammatory response

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28 Nov 2011
publication

GraXSR proteins interact with the VraFG ABC transporter to form a five-component system required for cationic antimicrobial peptide sensing and resistance in Staphylococcus aureus

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04 Jul 2011
publication

Bacitracin and nisin resistance in Staphylococcus aureus: a novel pathway involving the BraS/BraR two-component system (SA2417/SA2418) and both the BraD/BraE and VraD/VraE ABC transporters

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01 Jul 2011
publication

Investigation of the Staphylococcus aureus GraSR regulon reveals novel links to virulence, stress response and cell wall signal transduction pathways

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28 Feb 2011
publication

Peptidoglycan crosslinking relaxation plays an important role in Staphylococcus aureus WalKR-dependent cell viability

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13 May 2010
publication

The pleiotropic CymR regulator of Staphylococcus aureus plays an important role in virulence and stress response

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01 Jul 2009
publication

Characterization of a serine/threonine kinase involved in virulence of Staphylococcus aureus.

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22 May 2009
publication

Grasping at shadows: revealing the elusive nature of essential genes

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23 Oct 2008
publication

A matter of life and death: cell wall homeostasis and the WalKR (YycGF) essential signal transduction pathway

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01 Jan 2008
publication

Tearing down the wall: peptidoglycan metabolism and the WalK/WalR (YycG/YycF) essential two-component system

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07 Sep 2007
publication

New insights into the WalK/WalR (YycG/YycF) essential signal transduction pathway reveal a major role in controlling cell wall metabolism and biofilm formation in Staphylococcus aureus

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01 Jan 2005
publication

Raymond Dedonder 1920-2004

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01 Feb 2004
publication

Identification of genes controlled by the essential YycG/YycF two-component system of Staphylococcus aureus

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01 Feb 2004
publication

clpB, a novel member of the Listeria monocytogenes CtsR regulon, is involved in virulence but not in general stress tolerance

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01 Nov 2003
publication

A six amino acid deletion, partially overlapping the VanSB G2 ATP-binding motif, leads to constitutive glycopeptide resistance in VanB-type Enterococcus faecium

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01 Mar 2003
publication

Specificity of the interaction of RocR with the rocG-rocA intergenic region in Bacillus subtilis

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01 Feb 2003
publication

Comparative genomics reveal novel heat shock regulatory mechanisms in Staphylococcus aureus and other Gram-positive bacteria

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01 Jan 2003
publication

ClpP of Streptococcus salivarius is a novel member of the dually regulated class of stress response genes in gram-positive bacteria

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