We are investigating how protein bacteriocins import their toxic payload across the Gram-negative cell envelope, both as a means of understanding the translocation process itself and as a means of probing the organization of the cell envelope and the function of the protein machines within it. Our work focuses on the import mechanism of the group A endonuclease (DNase) colicin ColE9 into Escherichia coli, where we combine in vivo observations with structural, biochemical and biophysical approaches to dissect the molecular mechanism of colicin entry. ColE9 assembles a multiprotein 'translocon' complex at the E. coli outer membrane that triggers entry of the toxin across the outer membrane and the simultaneous jettisoning of its tightly bound...
International audienceSeveral proteins of the Tol/Pal system are required for group A colicin import...
International audienceColicins are antibiotic proteins that kill sensitive Escherichia coli cells. T...
Nuclease colicins bind their target receptor BtuB in the outer membrane of sensitive Escherichia col...
Gram-negative bacteria have evolved mechanisms to kill other microbial species to compete for space ...
Colicins are protein antibiotics deployed by Escherichia coli to eliminate competing strains. Colici...
The translocation of protein toxins into a cell relies on a myriad of protein-protein interactions. ...
The translocation of protein toxins into a cell relies on a myriad of protein-protein interactions. ...
AbstractBacteriocins are a diverse group of ribosomally synthesized protein antibiotics produced by ...
Gram-negative bacteria depend on energised protein complexes that connect the two membranes of the c...
The natively disordered N-terminal 83-aa translocation (T) domain of E group nuclease colicins recru...
Colicins are folded protein toxins that face the formidable task of translocating across one or both...
International audienceABSTRACT Colicins are bacterial antibiotic toxins produced by Escherichia coli...
The natively disordered N-terminal 83-aa translocation (T) domain of E group nuclease colicins recru...
The natively disordered N-terminal 83-aa translocation (T) domain of E group nuclease colicins recru...
Colicins are bacterial antibiotic toxins produced by Escherichia coli cells and are active against E...
International audienceSeveral proteins of the Tol/Pal system are required for group A colicin import...
International audienceColicins are antibiotic proteins that kill sensitive Escherichia coli cells. T...
Nuclease colicins bind their target receptor BtuB in the outer membrane of sensitive Escherichia col...
Gram-negative bacteria have evolved mechanisms to kill other microbial species to compete for space ...
Colicins are protein antibiotics deployed by Escherichia coli to eliminate competing strains. Colici...
The translocation of protein toxins into a cell relies on a myriad of protein-protein interactions. ...
The translocation of protein toxins into a cell relies on a myriad of protein-protein interactions. ...
AbstractBacteriocins are a diverse group of ribosomally synthesized protein antibiotics produced by ...
Gram-negative bacteria depend on energised protein complexes that connect the two membranes of the c...
The natively disordered N-terminal 83-aa translocation (T) domain of E group nuclease colicins recru...
Colicins are folded protein toxins that face the formidable task of translocating across one or both...
International audienceABSTRACT Colicins are bacterial antibiotic toxins produced by Escherichia coli...
The natively disordered N-terminal 83-aa translocation (T) domain of E group nuclease colicins recru...
The natively disordered N-terminal 83-aa translocation (T) domain of E group nuclease colicins recru...
Colicins are bacterial antibiotic toxins produced by Escherichia coli cells and are active against E...
International audienceSeveral proteins of the Tol/Pal system are required for group A colicin import...
International audienceColicins are antibiotic proteins that kill sensitive Escherichia coli cells. T...
Nuclease colicins bind their target receptor BtuB in the outer membrane of sensitive Escherichia col...