The cell fate acquisition is a highly complex phenomenon that involves a plethora of intrinsic and extrinsic instructive signals. However, despite the important progress in identification of key regulatory factors of this process, the mechanistic links between transcription factors, epigenome and chromatin structure which coordinate the regulation of cell differentiation and deregulation of gene networks during cell transformation are largely unknown. To address these questions for two model systems of cell fate transitions, namely the neuronal and endodermal cell differentiation induced by the morphogen retinoic acid and the stepwise tumorigenesis of primary human cells, we conducted integrative transcriptome, epigenome and chromatin archi...
Development and differentiation are complex cellular processes that are regulated by a cohort of tra...
All developmental processes in metazoans require the establishment of different genetic programs to ...
Enormous progress has been made in identifying chromatin “signatures” that define tissue-specific tr...
L’établissement de l’identité cellulaire est un phénomène très complexe qui implique pléthore de sig...
Individual cell fate decisions can vary according to changes in gene expression in response to envir...
Neural cell fate specification is a multistep process in which stem cells undergo sequential changes...
A multicellular organism consists of a huge variety of different cell types that are all derived fro...
This study aims on cell making-decision mechanisms in metazoan cells, in relation with stochastic ge...
Here, we exploit the spatial separation of temporal events of neural differentiation in the elongati...
Mammalian development requires the creation of hundreds of cell types, each with distinct patterns o...
The regulation of mammalian stem cell fate during differentiation is complex and can be delineated a...
The study of cellular plasticity is a powerful tool to understand the mechanisms directing cell fate...
Coordination of differentiation and cell cycle progression represents an essential process for embry...
Despite intensively studies, the fundamental mechanisms of cell fate decision during cellular differ...
The fundamental question of how an undifferentiated progenitor cell adopts a more specialized cell f...
Development and differentiation are complex cellular processes that are regulated by a cohort of tra...
All developmental processes in metazoans require the establishment of different genetic programs to ...
Enormous progress has been made in identifying chromatin “signatures” that define tissue-specific tr...
L’établissement de l’identité cellulaire est un phénomène très complexe qui implique pléthore de sig...
Individual cell fate decisions can vary according to changes in gene expression in response to envir...
Neural cell fate specification is a multistep process in which stem cells undergo sequential changes...
A multicellular organism consists of a huge variety of different cell types that are all derived fro...
This study aims on cell making-decision mechanisms in metazoan cells, in relation with stochastic ge...
Here, we exploit the spatial separation of temporal events of neural differentiation in the elongati...
Mammalian development requires the creation of hundreds of cell types, each with distinct patterns o...
The regulation of mammalian stem cell fate during differentiation is complex and can be delineated a...
The study of cellular plasticity is a powerful tool to understand the mechanisms directing cell fate...
Coordination of differentiation and cell cycle progression represents an essential process for embry...
Despite intensively studies, the fundamental mechanisms of cell fate decision during cellular differ...
The fundamental question of how an undifferentiated progenitor cell adopts a more specialized cell f...
Development and differentiation are complex cellular processes that are regulated by a cohort of tra...
All developmental processes in metazoans require the establishment of different genetic programs to ...
Enormous progress has been made in identifying chromatin “signatures” that define tissue-specific tr...