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We used mouse ENCODE data along with complementary data from other laboratories to study the dynamics of occupancy and the role in gene regulation of the transcription factor TAL1, a critical regulator of hematopoiesis, at multiple stages of hematopoietic differentiation. We combined ChIP-seq and RN...
ORGANISM(S): Mus musculus 
Identification of cell-type specific enhancers is important for understanding the regulation of programs controlling cellular development and differentiation. Enhancers are typically marked by the co-transcriptional activator protein p300 or by groups of cell-expressed transcription factors. We hypo...
ORGANISM(S): Homo sapiens 
Identification of cell-type specific enhancers is important for understanding the regulation of programs controlling cellular development and differentiation. Enhancers are typically marked by the co-transcriptional activator protein p300 or by groups of cell-expressed transcription factors. We hypo...
ORGANISM(S): Homo sapiens 
Combinatorial actions of relatively few transcription factors control hematopoietic differentiation. To investigate this process in erythro-megakaryopoiesis, we correlated the genome-wide chromatin occupancy signatures of four master hematopoietic transcription factors (GATA1, GATA2, SCL/TAL1 and FL...
ORGANISM(S): Mus musculus 
Combinatorial actions of relatively few transcription factors control hematopoietic differentiation. To investigate this process in erythro-megakaryopoiesis, we correlated the genome-wide chromatin occupancy signatures of four master hematopoietic transcription factors (GATA1, GATA2, TAL1, and FLI1)...
ORGANISM(S): Mus musculus 
Mammals express thousands of long noncoding (lnc) RNAs, a few of which are shown to function in tissue development. However, the entire repertoire of lncRNAs and the extent to which they regulate biological processes in different tissues and species are not defined. Indeed, most lncRNAs are not cons...
ORGANISM(S): Mus musculus 
Interplays among lineage specific nuclear proteins, chromatin modifying enzymes and the basal transcription machinery govern cellular differentiation, but their dynamics of actions and coordination with transcriptional control are not fully understood. Alterations in chromatin structure appear to es...
ORGANISM(S): Mus musculus 
The 15 strains of Gambierdiscus were cultivated in four separate laboratories. Each laboratory grew their available strains (see sample metadata) in addition to the G. australes strain AUS S080911_1 isolated from Pacific Ocean. Irradiance (70-100 umol photons m-2 s-1) and light/dark cycle (12h:12h)...
ORGANISM(S): Gambierdiscus Silvae (ncbitaxon:1550089) Gambierdiscus Carolinianus (ncbitaxon:864182) Gambierdiscus Australes (ncbitaxon:439317) Gambierdiscus Belizeanus (ncbitaxon:439316) Gambierdiscus Excentricus (ncbitaxon:986170) Gambierdiscus Caribaeus (ncbitaxon:864185) 
2024-02-26 | MSV000094172 | MassIVE
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