We developed a computational approach to find the best intervention to achieve transcription factor (TF) mediated transdifferentiation. We construct probabilistic Boolean networks (PBNs) from single-cell RNA sequencing data of two different cell states to model hematopoietic transcription factors cross-talk. This was achieved by a sampled network approach, which enabled us to construct large networks. The interventions to induce transdifferentiation consisted of permanently activating or deactivating each of the TFs and determining the probability mass transfer of steady-state probabilities from the departure to the destination cell type or state. Our findings support the common assumption that TFs that are differentially expressed betwee...
Hematopoietic stem cells (HSCs) reside at the apex of the hematopoietic hierarchy, possessing the ab...
We previously analyzed 15 000 transcriptomes of mouse hematopoietic stem and progenitor cells (HSPCs...
Molecular mechanisms employed by individual multipotent cells at the point of lineage commitment rem...
We developed a computational approach to find the best intervention to achieve transcription factor ...
Directed cell conversion (or transdifferentiation) of one somatic cell-type to another can be achiev...
T cell lineage differentiation of hematopoietic progenitors is controlled via gene regulatory networ...
Transdifferentiation, the process of converting from one cell type to another without going through ...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Contains fulltext : 284059.pdf (Publisher’s version ) (Open Access
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Transient activation of Src oncoprotein in non-transformed, breast epithelial cells can initiate an ...
Identifying the transcription factor interactions that are responsible for cell-specific gene expres...
Transcription control plays a crucial role in establishing a unique gene expression signature for ea...
The complexity of gene expression regulation relies on the synergic nature underlying the molecular ...
Forced transcription factor expression can transdifferentiate somatic cells into other specialised c...
Hematopoietic stem cells (HSCs) reside at the apex of the hematopoietic hierarchy, possessing the ab...
We previously analyzed 15 000 transcriptomes of mouse hematopoietic stem and progenitor cells (HSPCs...
Molecular mechanisms employed by individual multipotent cells at the point of lineage commitment rem...
We developed a computational approach to find the best intervention to achieve transcription factor ...
Directed cell conversion (or transdifferentiation) of one somatic cell-type to another can be achiev...
T cell lineage differentiation of hematopoietic progenitors is controlled via gene regulatory networ...
Transdifferentiation, the process of converting from one cell type to another without going through ...
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Contains fulltext : 284059.pdf (Publisher’s version ) (Open Access
Hematopoiesis is an ideal model system for stem cell biology with advanced experimental access. A sy...
Transient activation of Src oncoprotein in non-transformed, breast epithelial cells can initiate an ...
Identifying the transcription factor interactions that are responsible for cell-specific gene expres...
Transcription control plays a crucial role in establishing a unique gene expression signature for ea...
The complexity of gene expression regulation relies on the synergic nature underlying the molecular ...
Forced transcription factor expression can transdifferentiate somatic cells into other specialised c...
Hematopoietic stem cells (HSCs) reside at the apex of the hematopoietic hierarchy, possessing the ab...
We previously analyzed 15 000 transcriptomes of mouse hematopoietic stem and progenitor cells (HSPCs...
Molecular mechanisms employed by individual multipotent cells at the point of lineage commitment rem...