Subversion of Rho family small GTPases, which control actin dynamics, is a common infection strategy used by bacterial pathogens. In particular, Salmonella enterica serovar Typhimurium, Shigella flexneri, enteropathogenic Escherichia coli (EPEC), and enterohemorrhagic Escherichia coli (EHEC) translocate type III secretion system (T3SS) effector proteins to modulate the Rho GTPases RhoA, Cdc42, and Rac1, which trigger formation of stress fibers, filopodia, and lamellipodia/ruffles, respectively. The Salmonella effector SopE is a guanine nucleotide exchange factor (GEF) that activates Rac1 and Cdc42, which induce "the trigger mechanism of cell entry." Based on a conserved Trp-xxx-Glu motif, the T3SS effector proteins IpgB1 and IpgB2 of Shigel...
The bacterial pathogen Salmonella typhimurium colonizes its animal hosts by inducing its internaliza...
Salmonella spp. are gram negative bacteria capable of infecting a number of eukaryotic hosts. In hum...
SummaryIntracellular bacterial pathogens of a diverse nature share the ability to evade host immunit...
ABSTRACT Rho GTPases are important regulators of many cellular processes. Subversion of Rho GTPases ...
ABSTRACT Rho GTPases are important regulators of many cellular processes. Subversion of Rho GTPases ...
The bacterial enteropathogen Salmonella typhimurium employs a type III secretion system to inject ba...
Summary We investigated how the type III secretion system WxxxE effectors EspM2 of enterohaemorrhagi...
SummarySalmonella virulence effectors elicit host cell membrane ruffling to facilitate pathogen inva...
AbstractSalmonella enterica invasion of host cells requires the reversible activation of the Rho-fam...
SummaryMany bacterial pathogens use the type III secretion system to inject “effector” proteins into...
UNLABELLED: Rho GTPases are important regulators of many cellular processes. Subversion of Rho GTPas...
Many bacterial pathogens use the type III secretion system to inject "effector" proteins i...
Rho GTPases are common targets of bacterial toxins and type III secretion system effectors. IpgB1 an...
Enteropathogenic Escherichia coli (EPEC) strains are diarrheagenic pathogens that colonize the gut m...
Rho GTPases are common targets of bacterial toxins and type III secretion system effectors. IpgB1 an...
The bacterial pathogen Salmonella typhimurium colonizes its animal hosts by inducing its internaliza...
Salmonella spp. are gram negative bacteria capable of infecting a number of eukaryotic hosts. In hum...
SummaryIntracellular bacterial pathogens of a diverse nature share the ability to evade host immunit...
ABSTRACT Rho GTPases are important regulators of many cellular processes. Subversion of Rho GTPases ...
ABSTRACT Rho GTPases are important regulators of many cellular processes. Subversion of Rho GTPases ...
The bacterial enteropathogen Salmonella typhimurium employs a type III secretion system to inject ba...
Summary We investigated how the type III secretion system WxxxE effectors EspM2 of enterohaemorrhagi...
SummarySalmonella virulence effectors elicit host cell membrane ruffling to facilitate pathogen inva...
AbstractSalmonella enterica invasion of host cells requires the reversible activation of the Rho-fam...
SummaryMany bacterial pathogens use the type III secretion system to inject “effector” proteins into...
UNLABELLED: Rho GTPases are important regulators of many cellular processes. Subversion of Rho GTPas...
Many bacterial pathogens use the type III secretion system to inject "effector" proteins i...
Rho GTPases are common targets of bacterial toxins and type III secretion system effectors. IpgB1 an...
Enteropathogenic Escherichia coli (EPEC) strains are diarrheagenic pathogens that colonize the gut m...
Rho GTPases are common targets of bacterial toxins and type III secretion system effectors. IpgB1 an...
The bacterial pathogen Salmonella typhimurium colonizes its animal hosts by inducing its internaliza...
Salmonella spp. are gram negative bacteria capable of infecting a number of eukaryotic hosts. In hum...
SummaryIntracellular bacterial pathogens of a diverse nature share the ability to evade host immunit...