BACKGROUND: The gene regulatory circuit motif in which two opposing fate-determining transcription factors inhibit each other but activate themselves has been used in mathematical models of binary cell fate decisions in multipotent stem or progenitor cells. This simple circuit can generate multistability and explains the symmetric "poised" precursor state in which both factors are present in the cell at equal amounts as well as the resolution of this indeterminate state as the cell commits to either cell fate characterized by an asymmetric expression pattern of the two factors. This establishes the two alternative stable attractors that represent the two fate options. It has been debated whether cooperativity of molecular interactions is ne...
Cell fate decisions are controlled by complex intracellular molecular regulatory networks. Studies i...
These authors contributed equally to this work. Genetically identical cells sharing an environment c...
Despite being governed by the principles of nonequilibrium transitions, gene expression dynamics und...
The gene regulatory circuit motif in which two opposing fate-determining transcription factors inhib...
AbstractDifferentiation from a multipotent stem or progenitor state to a mature cell is an essential...
Cell fate decision circuits must be variable enough for genetically identical cells to adopt a multi...
A toggle switch consists of two genes that mutually repress each other. This regulatory motif is act...
AbstractA toggle switch consists of two genes that mutually repress each other. This regulatory moti...
<p>(A) A schematic representation of cell differentiation through a binary cell fate decision. Signa...
Bistable switches are common gene regulatory motifs directing two mutually exclusive cell fates. The...
In stem cell differentiation, a pluripotent stem cell becomes progressively specialized and generate...
Background: Cellular differentiation during development is controlled by gene regulatory networks (G...
Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem a...
Many genes have been identified as driving cellular differentiation, but because of their complex in...
The capacity of pluripotent embryonic stem cells to differentiate into any cell type in the body mak...
Cell fate decisions are controlled by complex intracellular molecular regulatory networks. Studies i...
These authors contributed equally to this work. Genetically identical cells sharing an environment c...
Despite being governed by the principles of nonequilibrium transitions, gene expression dynamics und...
The gene regulatory circuit motif in which two opposing fate-determining transcription factors inhib...
AbstractDifferentiation from a multipotent stem or progenitor state to a mature cell is an essential...
Cell fate decision circuits must be variable enough for genetically identical cells to adopt a multi...
A toggle switch consists of two genes that mutually repress each other. This regulatory motif is act...
AbstractA toggle switch consists of two genes that mutually repress each other. This regulatory moti...
<p>(A) A schematic representation of cell differentiation through a binary cell fate decision. Signa...
Bistable switches are common gene regulatory motifs directing two mutually exclusive cell fates. The...
In stem cell differentiation, a pluripotent stem cell becomes progressively specialized and generate...
Background: Cellular differentiation during development is controlled by gene regulatory networks (G...
Understanding cell-fate decisions in stem cell populations is a major goal of modern biology. Stem a...
Many genes have been identified as driving cellular differentiation, but because of their complex in...
The capacity of pluripotent embryonic stem cells to differentiate into any cell type in the body mak...
Cell fate decisions are controlled by complex intracellular molecular regulatory networks. Studies i...
These authors contributed equally to this work. Genetically identical cells sharing an environment c...
Despite being governed by the principles of nonequilibrium transitions, gene expression dynamics und...