Haematopoietic lineage commitments are presented by a canonical roadmap in which haematopoietic stem cells or multipotent progenitors (MPPs) bifurcate into progenitors of more restricted lineages and ultimately mature to terminally differentiated cells. Although transcription factors playing significant roles in cell-fate commitments have been extensively studied, integrating such knowledge into the dynamic models to understand the underlying biological mechanism remains challenging. The hypothesis and modelling approach of the endogenous network has been developed previously and tested in various biological processes and is used in the present study of haematopoietic lineage commitments. The endogenous network is constructed based on the k...
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...
Transcription factor (TF) networks determine cell-type identity by establishing and maintaining line...
How the molecular programs of differentiated cells develop as cells transit from multipotency throug...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
Blood stem cells need to both perpetuate themselves (self-renew) and differentiate into all mature b...
Blood formation is believed to occur through stepwise progression of haematopoietic stem cells (HSCs...
Autoregulation of transcription factors and cross-antagonism between lineage-specific transcription ...
Hematopoietic stem cell lineage choices are decided by genetic networks that are turned ON/OFF in a ...
Multistep cell fate transitions with stepwise changes of transcriptional profiles are common to many...
Maintenance of the blood system requires balanced cell-fate decisions of haematopoietic stem and pro...
Hematopoietic stem cell lineage choices are decided by genetic networks that are turned ON/OFF in a ...
The dynamics of haematopoietic stem cell differentiation and the hierarchy of oligopotent stem cells...
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...
Transcription factor (TF) networks determine cell-type identity by establishing and maintaining line...
How the molecular programs of differentiated cells develop as cells transit from multipotency throug...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
Recent advances in molecular profiling provide descriptive datasets of complex differentiation lands...
MOTIVATION: Combinatorial interactions of transcription factors with cis-regulatory elements control...
Blood stem cells need to both perpetuate themselves (self-renew) and differentiate into all mature b...
Blood formation is believed to occur through stepwise progression of haematopoietic stem cells (HSCs...
Autoregulation of transcription factors and cross-antagonism between lineage-specific transcription ...
Hematopoietic stem cell lineage choices are decided by genetic networks that are turned ON/OFF in a ...
Multistep cell fate transitions with stepwise changes of transcriptional profiles are common to many...
Maintenance of the blood system requires balanced cell-fate decisions of haematopoietic stem and pro...
Hematopoietic stem cell lineage choices are decided by genetic networks that are turned ON/OFF in a ...
The dynamics of haematopoietic stem cell differentiation and the hierarchy of oligopotent stem cells...
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...
Transcription factor (TF) networks determine cell-type identity by establishing and maintaining line...