Area of research
Genetics · Molecular Biology
Research interest
Research interests include Bacterial Genetics and Biotechnology, RNA and protein synthesis mechanisms, Trace Elements in Health, and Antibiotic Resistance in Bacteria.
The extracytoplasmic sigma factor σX supports biofilm formation and increases biocontrol efficacy in Bacillus velezensis 118
Deciphering the Molecular Mechanism of Peracetic Acid Response in Listeria monocytogenes
The multifaceted roles of phosphoethanolamine-modified lipopolysaccharides: from stress response and virulence to cationic antimicrobial resistance
Transcriptional profiling of the<i>L. monocytogenes</i>PrfA regulon identifies six novel putative PrfA-regulated genes
Identification of Novel Mobilized Colistin Resistance Gene <i>mcr-9</i> in a Multidrug-Resistant, Colistin-Susceptible Salmonella enterica Serotype Typhimurium Isolate
Systematic Review of the <i>Listeria Monocytogenes</i> σ <sup>B</sup> Regulon Supports a Role in Stress Response, Virulence and Metabolism
Cross Talk between SigB and PrfA in Listeria monocytogenes Facilitates Transitions between Extra- and Intracellular Environments
<i>Bacillus subtilis</i> FolE is sustained by the ZagA zinc metallochaperone and the alarmone ZTP under conditions of zinc deficiency
Lack of formylated methionyl-tRNA has pleiotropic effects on Bacillus subtilis
Mn2+-Sensing Mechanisms of yybP-ykoY Orphan Riboswitches
<scp>PfeT</scp>, a <scp>P</scp><sub>1B4</sub>‐type <scp>ATP</scp>ase, effluxes ferrous iron and protects <scp><i>B</i></scp><i>acillus subtilis</i> against iron intoxication
Bacillithiol is a major buffer of the labile zinc pool in <scp><i>B</i></scp><i>acillus subtilis</i>
Peptidoglycan Recognition Proteins Kill Bacteria by Inducing Oxidative, Thiol, and Metal Stress
A Global Investigation of the Bacillus subtilis Iron-Sparing Response Identifies Major Changes in Metabolism
Direct substitution and assisted dissociation pathways for turning off transcription by a MerR-family metalloregulator