Protein polarization underlies differentiation in metazoans and in bacteria. How symmetric polarization can instate functional asymmetry remains elusive. Here, we show by super-resolution photo-activated localization microscopy and edgetic mutations that the bitopic zinc-finger protein ZitP implements specialized developmental functions - pilus biogenesis and multifactorial swarming motility - while shaping distinct nanoscale (bi)polar architectures in the asymmetric model bacterium Caulobacter crescentus. Polar assemblage and accumulation of ZitP and its effector protein CpaM are orchestrated in time and space by conserved components of the cell cycle circuitry that coordinate polar morphogenesis with cell cycle progression, and also act o...
Spatial asymmetry is crucial to development. One mechanism for generating asymmetry involves the loc...
Despite the myriad of different sensory domains encoded in bacteria, only a few types are known to c...
Cell polarity is essential for many bacterial activities, but the mechanisms responsible for its est...
Although free-living and obligate intracellular bacteria are both polarized it is unclear whether th...
ABSTRACT Signaling hubs at bacterial cell poles establish cell polarity in the absence of membrane-b...
Understanding how asymmetries in cellular constituents are achieved and how such positional informat...
SummaryPolarity is often an intrinsic property of the cell, yet little is known about its origin or ...
Cell polarity underlies key processes in all cells, including growth, differentiation and division. ...
Caulobacter crescentus is a Gram-negative alpha-proteobacterium that divides asymmetrically genereti...
Bacterial cells are spatiotemporally highly organised with proteins localising dynamically to distin...
Caulobacter crescentus is a major model organism to study prokaryotic asymmetric cell division. In C...
SummaryCell polarization is an integral part of many unrelated bacterial processes. How intrinsic ce...
Regulated cell polarity is central to many cellular processes. We investigated the mechanisms that g...
Cell polarity underlies key processes in all cells, including growth, differentiation and division. ...
International audienceIn bacteria, cell polarization involves the controlled targeting of specific p...
Spatial asymmetry is crucial to development. One mechanism for generating asymmetry involves the loc...
Despite the myriad of different sensory domains encoded in bacteria, only a few types are known to c...
Cell polarity is essential for many bacterial activities, but the mechanisms responsible for its est...
Although free-living and obligate intracellular bacteria are both polarized it is unclear whether th...
ABSTRACT Signaling hubs at bacterial cell poles establish cell polarity in the absence of membrane-b...
Understanding how asymmetries in cellular constituents are achieved and how such positional informat...
SummaryPolarity is often an intrinsic property of the cell, yet little is known about its origin or ...
Cell polarity underlies key processes in all cells, including growth, differentiation and division. ...
Caulobacter crescentus is a Gram-negative alpha-proteobacterium that divides asymmetrically genereti...
Bacterial cells are spatiotemporally highly organised with proteins localising dynamically to distin...
Caulobacter crescentus is a major model organism to study prokaryotic asymmetric cell division. In C...
SummaryCell polarization is an integral part of many unrelated bacterial processes. How intrinsic ce...
Regulated cell polarity is central to many cellular processes. We investigated the mechanisms that g...
Cell polarity underlies key processes in all cells, including growth, differentiation and division. ...
International audienceIn bacteria, cell polarization involves the controlled targeting of specific p...
Spatial asymmetry is crucial to development. One mechanism for generating asymmetry involves the loc...
Despite the myriad of different sensory domains encoded in bacteria, only a few types are known to c...
Cell polarity is essential for many bacterial activities, but the mechanisms responsible for its est...