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Here we performed a ChIP-seq experiment on a sample of adherent cultures of mouse neural stem cells (NS5 cell line) under normal growth conditions. This resulted in the generation of a genome-wide map of Zeb1 binding to chromatin.
ORGANISM(S): Mus musculus 
Here we performed a ChIP-seq experiment on a sample of adherent cultures of mouse neural stem cells (NS5 cell line) expressing an inducible version of the proneural factor Mash1/Ascl1 (Ascl1-ERT2) under normal growth conditions and after 24 hours of activation by 4-Hydroxytamoxifen. This resulted in...
ORGANISM(S): Mus musculus 
Here we performed a ChIP-seq experiment on a sample of adherent cultures of mouse neural stem cells (NS5 cell line) under normal growth conditions and upon short term activation (30 minutes) of an inducible version of the proneural factor Mash1/Ascl1 (Ascl1-ERT2). This resulted in the generation of ...
ORGANISM(S): Mus musculus 
We performed ChIP-seq on a complex developing tissue (the spinal cord) at mouse embryonic day 12.5. Genome-wide binding sites of Mash1 were generated. ChIP-seq of Mash1/Ascl1 in a heterogeneous tissue.
ORGANISM(S): Mus musculus 
dataset contains 8 samples: 2 asynchronous and 2 mitotically synchronized populations (one with 90% and another with 95% mitotic purity) and 4 corresponding inputs. Cells were synchonized for 10h with colchicine at 330nM. asyncronous samples (interphase) were sonicated and prepared in parallel with ...
ORGANISM(S): Mus musculus 
Here we performed DNAse-seq experiments on samples of adherent cultures of mouse neural stem cells (NS5 cell line) under normal growth conditions and upon differentiation by expression of an inducible version of the proneural factor Mash1/Ascl1 (Ascl1-ERT2). This resulted in the generation of genome...
ORGANISM(S): Mus musculus 
The proper balance of excitatory and inhibitory neurons is crucial to normal processing of somatosensory information in the dorsal spinal cord. Two neural basic helix-loop-helix transcription factors, Ascl1 and Ptf1a, are essential for generating the correct number and sub-type of neurons in multipl...
ORGANISM(S): Mus musculus 
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