AbstractNonlinear amplification of gene expression of master regulators is essential for cellular differentiation. Here we investigated determinants that control the kinetics of the genetic switching process from the vegetative state (B-state) to the competent state (K-state) of Bacillus subtilis, explicitly including the switching window which controls the probability for competence initiation in a cell population. For individual cells, we found that after initiation of switching, the levels of the master regulator [ComK](t) increased with sigmoid shape and saturation occurred at two distinct levels of [ComK]. We analyzed the switching kinetics into the state with highest [ComK] and found saturation after a switching period of length 1.4 ±...
A phylogenetically diverse subset of bacterial species are naturally competent for transformation by...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Cell fate decision circuits must be variable enough for genetically identical cells to adopt a multi...
AbstractNonlinear amplification of gene expression of master regulators is essential for cellular di...
ComK transcriptionally controls competence for the uptake of transforming DNA in Bacillus subtilis. ...
<div><p>ComK transcriptionally controls competence for the uptake of transforming DNA in <em>Bacillu...
A single gene, regulating its own expression via a positive feedback loop, constitutes a common moti...
Transformation is the process of import and inheritable integration of DNA from the environment. As ...
It has long been noted that batch cultures inoculated with resting bacteria exhibit a progression of...
It has long been noted that batch cultures inoculated with resting bacteria exhibit a progression of...
In the stationary phase, Bacillus subtilis differentiates stochastically and transiently into the st...
Phenotype switching can be triggered by external stimuli and by intrinsic stochasticity. Here, we fo...
BackgroundIt is a fascinating phenomenon that in genetically identical bacteria populations of Bacil...
As is mentioned in the main article, the competence module controls the tran-sitions from the sporul...
A phylogenetically diverse subset of bacterial species are naturally competent for transformation by...
A phylogenetically diverse subset of bacterial species are naturally competent for transformation by...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Cell fate decision circuits must be variable enough for genetically identical cells to adopt a multi...
AbstractNonlinear amplification of gene expression of master regulators is essential for cellular di...
ComK transcriptionally controls competence for the uptake of transforming DNA in Bacillus subtilis. ...
<div><p>ComK transcriptionally controls competence for the uptake of transforming DNA in <em>Bacillu...
A single gene, regulating its own expression via a positive feedback loop, constitutes a common moti...
Transformation is the process of import and inheritable integration of DNA from the environment. As ...
It has long been noted that batch cultures inoculated with resting bacteria exhibit a progression of...
It has long been noted that batch cultures inoculated with resting bacteria exhibit a progression of...
In the stationary phase, Bacillus subtilis differentiates stochastically and transiently into the st...
Phenotype switching can be triggered by external stimuli and by intrinsic stochasticity. Here, we fo...
BackgroundIt is a fascinating phenomenon that in genetically identical bacteria populations of Bacil...
As is mentioned in the main article, the competence module controls the tran-sitions from the sporul...
A phylogenetically diverse subset of bacterial species are naturally competent for transformation by...
A phylogenetically diverse subset of bacterial species are naturally competent for transformation by...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Cell fate decision circuits must be variable enough for genetically identical cells to adopt a multi...