<div><p>Type 3 secretion systems (T3SSs) are essential components of two complex bacterial machineries: the flagellum, which drives cell motility, and the non-flagellar T3SS (NF-T3SS), which delivers effectors into eukaryotic cells. Yet the origin, specialization, and diversification of these machineries remained unclear. We developed computational tools to identify homologous components of the two systems and to discriminate between them. Our analysis of >1,000 genomes identified 921 T3SSs, including 222 NF-T3SSs. Phylogenomic and comparative analyses of these systems argue that the NF-T3SS arose from an exaptation of the flagellum, i.e. the recruitment of part of the flagellum structure for the evolution of the new protein delivery functi...
Case studies of the evolution of molecular machines remain scarce. One of the most diverse and wides...
Type III secretion systems (T3SS) are essential for motility and virulence in many bacterial pathoge...
One of the most exciting developments in the field of bacterial pathogenesis in recent years is the ...
International audienceType 3 secretion systems (T3SSs) are essential components of two complex bacte...
Type 3 secretion systems (T3SSs) are essential components of two complex bacterial machineries: the ...
<p>We propose that genes common to the flagellum and the NF-T3SS were present in the flagellar ances...
To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble...
To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble...
To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble...
Processes of molecular innovation require tinkering and shifting in the function of existing genes. ...
Numerous bacterial proteins exert their function outside the prokaryotic cell. To this end, both Gra...
International audienceProcesses of molecular innovation require tinkering and shifting in the functi...
Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (...
Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (...
The type-III secretion system (T3SS) is an export machine used by pathogenic Gram-negative bacteria ...
Case studies of the evolution of molecular machines remain scarce. One of the most diverse and wides...
Type III secretion systems (T3SS) are essential for motility and virulence in many bacterial pathoge...
One of the most exciting developments in the field of bacterial pathogenesis in recent years is the ...
International audienceType 3 secretion systems (T3SSs) are essential components of two complex bacte...
Type 3 secretion systems (T3SSs) are essential components of two complex bacterial machineries: the ...
<p>We propose that genes common to the flagellum and the NF-T3SS were present in the flagellar ances...
To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble...
To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble...
To fulfill complex biological tasks, such as locomotion and protein translocation, bacteria assemble...
Processes of molecular innovation require tinkering and shifting in the function of existing genes. ...
Numerous bacterial proteins exert their function outside the prokaryotic cell. To this end, both Gra...
International audienceProcesses of molecular innovation require tinkering and shifting in the functi...
Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (...
Many bacterial pathogens employ a type III secretion system to deliver type III secreted effectors (...
The type-III secretion system (T3SS) is an export machine used by pathogenic Gram-negative bacteria ...
Case studies of the evolution of molecular machines remain scarce. One of the most diverse and wides...
Type III secretion systems (T3SS) are essential for motility and virulence in many bacterial pathoge...
One of the most exciting developments in the field of bacterial pathogenesis in recent years is the ...