Area of research
Endocrinology · Genetics
Research interest
Research interests include Biology, Secretion, Effector, Cell biology, Virulence, and Microbiology.
Uncovering phenotypic inheritance from single cells with Microcolony-seq
Formation of a membraneless compartment regulates bacterial virulence
A bacterial host factor confines phage localization for excluding the infected compartment through cell division
Sensing for survival: specialised regulatory mechanisms of Type III secretion systems in Gram‐negative pathogens
Flagellar rotation facilitates the transfer of a bacterial conjugative plasmid
EspH utilizes phosphoinositide and Rab binding domains to interact with plasma membrane infection sites and Rab GTPases*
Dormant bacterial spores encrypt a long-lasting transcriptional program to be executed during revival
Discovery of a Novel Inner Membrane-Associated Bacterial Structure Related to the Flagellar Type III Secretion System
Activation of the Type III Secretion System of Enteropathogenic Escherichia coli Leads to Remodeling of Its Membrane Composition and Function
The impact of Hfq-mediated sRNA-mRNA interactome on the virulence of enteropathogenic <i>Escherichia coli</i>
Escherichia coli O127 group 4 capsule proteins assemble at the outer membrane
Binding specificity of type three secretion system effector <scp>NleH2</scp> to multi‐cargo chaperone <scp>CesT</scp> and their phosphorylation
Mitochondrial Targeting of the Enteropathogenic Escherichia coli Map Triggers Calcium Mobilization, ADAM10-MAP Kinase Signaling, and Host Cell Apoptosis
Donor-delivered cell wall hydrolases facilitate nanotube penetration into recipient bacteria
The bacterial metalloprotease NleD selectively cleaves mitogen-activated protein kinases that have high flexibility in their activation loop
Escherichia coli O-antigen capsule (group 4) is essential for serum resistance
Pathogenic E. coli Extracts Nutrients from Infected Host Cells Utilizing Injectisome Components
A Ubiquitous Platform for Bacterial Nanotube Biogenesis
Enteropathogenic Escherichia coli remodels host endosomes to promote endocytic turnover and breakdown of surface polarity
Intraepithelial neutrophils in mammary, urinary and gall bladder infections
Control of Type III Secretion System Effector/Chaperone Ratio Fosters Pathogen Adaptation to Host-Adherent Lifestyle
EspH Suppresses Erk by Spatial Segregation from CD81 Tetraspanin Microdomains
Host cell attachment elicits posttranscriptional regulation in infecting enteropathogenic bacteria
A long-term epigenetic memory switch controls bacterial virulence bimodality
Epithelial cells detect functional type III secretion system of enteropathogenic Escherichia coli through a novel NF-κB signaling pathway
Type Three Secretion System-Dependent Microvascular Thrombosis and Ischemic Enteritis in Human Gut Xenografts Infected with Enteropathogenic Escherichia coli
Age-Dependent Susceptibility to Enteropathogenic Escherichia coli (EPEC) Infection in Mice
Subversion of MAPK signaling by pathogenic bacteria
Dynamics of Expression and Maturation of the Type III Secretion System of Enteropathogenic Escherichia coli
PafR, a Novel Transcription Regulator, Is Important for Pathogenesis in Uropathogenic Escherichia coli