International audienceAlternative cell differentiation pathways are believed to arise from the concerted action of signalling pathways and transcriptional regulatory networks. However, the prediction of mammalian cell differentiation from the knowledge of the presence of specific signals and transcriptional factors is still a daunting challenge. In this respect, the vertebrate hematopoietic system, with its many branching differentiation pathways and cell types, is a compelling case study. In this paper, we propose an integrated, comprehensive model of the regulatory network and signalling pathways controlling Th cell differentiation. As most available data are qualitative, we rely on a logical formalism to perform extensive dynamical analy...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Despite their importance, the molecular circuits that control the differentiation of naive T cells r...
International audienceAlternative cell differentiation pathways are believed to arise from the conce...
Alternative cell differentiation pathways are believed to arise from the concerted action of signall...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
CD4+ T cells provide cell-mediated immunity in response to various antigens. During an immune respon...
Despite their importance, the molecular circuits that control the differentiation of naïve T cells r...
<div><p>CD4+ T cells orchestrate the adaptive immune response in vertebrates. While both experimenta...
Models describing the process of stem-cell differentiation are plentiful, and may offer insights int...
AbstractThe complex spectrum of cell types produced in mammalian hematopoiesis can be understood as ...
<div><p>Cell differentiation is typically directed by external signals that drive opposing regulator...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
Cell differentiation is typically directed by external signals that drive opposing regulatory pathwa...
The complex spectrum of cell types produced in mammalian hematopoiesis can be understood as the outp...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Despite their importance, the molecular circuits that control the differentiation of naive T cells r...
International audienceAlternative cell differentiation pathways are believed to arise from the conce...
Alternative cell differentiation pathways are believed to arise from the concerted action of signall...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
CD4+ T cells provide cell-mediated immunity in response to various antigens. During an immune respon...
Despite their importance, the molecular circuits that control the differentiation of naïve T cells r...
<div><p>CD4+ T cells orchestrate the adaptive immune response in vertebrates. While both experimenta...
Models describing the process of stem-cell differentiation are plentiful, and may offer insights int...
AbstractThe complex spectrum of cell types produced in mammalian hematopoiesis can be understood as ...
<div><p>Cell differentiation is typically directed by external signals that drive opposing regulator...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
Cell differentiation is typically directed by external signals that drive opposing regulatory pathwa...
The complex spectrum of cell types produced in mammalian hematopoiesis can be understood as the outp...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Despite their importance, the molecular circuits that control the differentiation of naive T cells r...