A single gene, regulating its own expression via a positive feedback loop, constitutes a common motif in gene regulatory networks and signalling cascades. Recent experiments on the development of competence in the bacterial population B. subtilis show that the autoregulatory genetic module by itself can give rise to two types of cellular states. The states correspond to the low and high expression states of the master regulator ComK. The high expression state is attained when the ComK protein level exceeds a threshold value leading to a full activation of the autostimulatory loop. Stochasticity in gene expression drives the transitions between the two stable states. In this paper, we explain the appearance of bimodal protein distributions i...
Signal transduction by prokaryotes almost exclusively relies on two-component systems for sensing an...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
Feedback loops are typical motifs appearing in gene regulatory networks. In some well-studied model ...
<div><p>Gene expression can be highly heterogeneous in isogenic cell populations. An extreme type of...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Because the components of genetic networks are present in small quantities, the detailed behavior of...
We study the functional characteristics of a two-gene motif consisting of a double positive feedback...
AbstractNonlinear amplification of gene expression of master regulators is essential for cellular di...
AbstractNonlinear amplification of gene expression of master regulators is essential for cellular di...
AbstractPositive autoregulation in gene regulation networks has been shown in the past to exhibit st...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
Signal transduction by prokaryotes almost exclusively relies on two-component systems for sensing an...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
AbstractPositive autoregulation in gene regulation networks has been shown in the past to exhibit st...
Signal transduction by prokaryotes almost exclusively relies on two-component systems for sensing an...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
Feedback loops are typical motifs appearing in gene regulatory networks. In some well-studied model ...
<div><p>Gene expression can be highly heterogeneous in isogenic cell populations. An extreme type of...
Within an isogenic population, even in the same extracellular environment, individual cells can exhi...
Because the components of genetic networks are present in small quantities, the detailed behavior of...
We study the functional characteristics of a two-gene motif consisting of a double positive feedback...
AbstractNonlinear amplification of gene expression of master regulators is essential for cellular di...
AbstractNonlinear amplification of gene expression of master regulators is essential for cellular di...
AbstractPositive autoregulation in gene regulation networks has been shown in the past to exhibit st...
Microbial research generally focuses on clonal populations. However, bacterial cells with identical ...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
Signal transduction by prokaryotes almost exclusively relies on two-component systems for sensing an...
We report the results of operator state fluctuations in gene expression for the entire bacterial gro...
AbstractPositive autoregulation in gene regulation networks has been shown in the past to exhibit st...
Signal transduction by prokaryotes almost exclusively relies on two-component systems for sensing an...
AbstractWe report the results of operator state fluctuations in gene expression for the entire bacte...
Feedback loops are typical motifs appearing in gene regulatory networks. In some well-studied model ...