International audienceIntestinal organoids accurately recapitulate epithelial homeostasis in vivo, thereby representing a powerful in vitro system to investigate lineage specification and cellular differentiation. Here, we applied a multi-omics framework on stem cell-enriched and stem cell-depleted mouse intestinal organoids to obtain a holistic view of the molecular mechanisms that drive differential gene expression during adult intestinal stem cell differentiation. Our data revealed a global rewiring of the transcriptome and proteome between intestinal stem cells and enterocytes, with the majority of dynamic protein expression being transcription-driven. Integrating absolute mRNA and protein copy numbers revealed post-transcrip-tional reg...
Differentiation and specialization of epithelial cells in the small intestine are regulated in two w...
The emergence of intestinal organoids, as a stem cell-based self-renewable model system, has led to ...
AbstractThe cellular composition of barrier epithelia is essential to organismal homoeostasis. In pa...
Organs are composed of diverse cell types that traverse transient states during organogenesis. To in...
Intestinal stem cells are non-quiescent, dividing epithelial cells that rapidly differentiate into p...
Organs are composed of diverse cell types, which traverse transient states during organogenesis. To ...
MasterDifferentiation is a fine-tuned process orchestrated by dynamic changes of gene regulatory net...
Human induced pluripotent stem cells (hiPSC) have been used to generate intestinal organoids that mi...
International audienceThe rapid renewal of intestinal epithelium is mediated by a pool of stem cells...
ABSTRACT BIOINFORMATIC ANALYSIS OF EPITHELIAL:MESENCHYMAL CROSSTALK DURING MOUSE GUT DEVELOPMENT AND...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
The work in this thesis adds to our knowledge of intestinal stem cell physiology. After identificati...
The intestinal epithelium is one of the most rapidly self-renewing tissues in the body and thus the ...
SummaryCell differentiation requires remodeling of tissue-specific gene loci and activities of key t...
Differentiation and specialization of epithelial cells in the small intestine are regulated in two w...
The emergence of intestinal organoids, as a stem cell-based self-renewable model system, has led to ...
AbstractThe cellular composition of barrier epithelia is essential to organismal homoeostasis. In pa...
Organs are composed of diverse cell types that traverse transient states during organogenesis. To in...
Intestinal stem cells are non-quiescent, dividing epithelial cells that rapidly differentiate into p...
Organs are composed of diverse cell types, which traverse transient states during organogenesis. To ...
MasterDifferentiation is a fine-tuned process orchestrated by dynamic changes of gene regulatory net...
Human induced pluripotent stem cells (hiPSC) have been used to generate intestinal organoids that mi...
International audienceThe rapid renewal of intestinal epithelium is mediated by a pool of stem cells...
ABSTRACT BIOINFORMATIC ANALYSIS OF EPITHELIAL:MESENCHYMAL CROSSTALK DURING MOUSE GUT DEVELOPMENT AND...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
The work in this thesis adds to our knowledge of intestinal stem cell physiology. After identificati...
The intestinal epithelium is one of the most rapidly self-renewing tissues in the body and thus the ...
SummaryCell differentiation requires remodeling of tissue-specific gene loci and activities of key t...
Differentiation and specialization of epithelial cells in the small intestine are regulated in two w...
The emergence of intestinal organoids, as a stem cell-based self-renewable model system, has led to ...
AbstractThe cellular composition of barrier epithelia is essential to organismal homoeostasis. In pa...