Area of research
Genetics · Molecular Biology
Research interest
Research interests include Bacterial Genetics and Biotechnology, Bacterial biofilms and quorum sensing, Brucella: diagnosis, epidemiology, treatment, and Bacteriophages and microbial interactions.
Multiomic analysis reveals cellular, transcriptomic and epigenetic changes in intestinal pouches of ulcerative colitis patients
Microbially catalyzed conjugation of GABA and tyramine to bile acids
Bile acid fitness determinants of a <i>Bacteroides fragilis</i> isolate from a human pouchitis patient
Early-Life Microbial Restitution Reduces Colitis Risk Promoted by Antibiotic-Induced Gut Dysbiosis in Interleukin 10–/– Mice
Flagellar Perturbations Activate Adhesion through Two Distinct Pathways in <i>Caulobacter crescentus</i>
A Genome-Wide Analysis of Adhesion in <i>Caulobacter crescentus</i> Identifies New Regulatory and Biosynthetic Components for Holdfast Assembly
<i>Brucella</i> Periplasmic Protein EipB Is a Molecular Determinant of Cell Envelope Integrity and Virulence
Genome-scale fitness profile of <i>Caulobacter crescentus</i> grown in natural freshwater
Experimental evolution of diverse Escherichia coli metabolic mutants identifies genetic loci for convergent adaptation of growth rate
Gene network analysis identifies a central post-transcriptional regulator of cellular stress survival
Brucella abortus Induces a Warburg Shift in Host Metabolism That Is Linked to Enhanced Intracellular Survival of the Pathogen
Structure and function of HWE/HisKA2-family sensor histidine kinases
Data publication with the structural biology data grid supports live analysis
Activation of Bacteroides fragilis toxin by a novel bacterial protease contributes to anaerobic sepsis in mice
Atypical modes of bacterial histidine kinase signaling
Next-Generation High-Throughput Functional Annotation of Microbial Genomes
Brucella abortus ΔrpoE1 confers protective immunity against wild type challenge in a mouse model of brucellosis
Evolving New Protein-Protein Interaction Specificity through Promiscuous Intermediates
Identification of the PhoB Regulon and Role of PhoU in the Phosphate Starvation Response of Caulobacter crescentus
General Stress Signaling in the Alphaproteobacteria
Structural asymmetry in a conserved signaling system that regulates division, replication, and virulence of an intracellular pathogen
Brucella abortus Cell Cycle and Infection Are Coordinated
Virulence Regulation with Venus Flytrap Domains: Structure and Function of the Periplasmic Moiety of the Sensor-Kinase BvgS
Scaling laws governing stochastic growth and division of single bacterial cells
The Coding and Noncoding Architecture of the Caulobacter crescentus Genome
Host-Directed Antimicrobial Drugs with Broad-Spectrum Efficacy against Intracellular Bacterial Pathogens
A Cell Cycle and Nutritional Checkpoint Controlling Bacterial Surface Adhesion
The <scp><i>B</i></scp><i>rucella abortus</i> virulence regulator, <scp>LovhK</scp>, is a sensor kinase in the general stress response signalling pathway
Bacterial lifestyle shapes stringent response activation
The Brucella abortus General Stress Response System Regulates Chronic Mammalian Infection and Is Controlled by Phosphorylation and Proteolysis