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E-GEOD-78977 GSE78977, SRP071253 ChIP-seq Mus musculus

Genome-wide chromatin landscape of chemical-induced neural stem cell reprogramming from defined fibroblasts

·Released May 15, 2016 ·Updated May 22, 2016
25
Samples
25
Assays
Description

Cellular reprogramming using chemically defined conditions, without genetic manipulation, is a promising approach for generating clinically relevant cell types for regenerative medicine and drug discovery. However, small molecule-driven approaches for inducing lineage-specific stem cells from somatic cells across lineage boundaries have been challenging to develop. Here, we report highly efficient reprogramming of mouse fibroblasts into induced neural stem cell-like cells (ciNSLCs) using a cocktail of nine small molecules (M9). The resulting ciNSLCs closely resemble primary neural stem cells molecularly and functionally. Transcriptome analysis revealed that M9 induces a gradual and specific conversion of fibroblasts towards a neural fate. During reprogramming specific transcription factors such as Elk1 and Gli2 that are downstream of M9-induced signaling pathways bind and activate endogenous master neural genes to specify neural identity. Our study therefore provides an effective chemical approach for generating neural stem cells from mouse fibroblasts, and reveals mechanistic insights into underlying reprogramming process. Genome-wide epigenetic changes of H3K4me1, H3K4me3, H3K27me3, and H3K27ac were analyzed by CHIP-seq for tdMEFs from day 0 (ciNSLC), day 4 (D4), day 8 (D8) of M9-induced neural reprogramming, and ciNSLCs and pri-NPC.

Sample Attributes
cell type
ciNSLCs, pri-NPC, tdMEFs at day 0 of reprogramming, tdMEFs at day 4 of reprogramming, tdMEFs at day 8 of reprogramming
chip antibody
H3K27ac (Millipore, 17-683, lot 2510209), H3K27me3 (Millipore, 17-622, lot 2135434), H3K4me1 (Abcam, ab8895, lot GR193727-1), H3K4me3 (Millipore, 17-614, lot 2109590), None
organism
Mus musculus
Experiment Info
Accession
E-GEOD-78977
GEO ID
GSE78977, SRP071253
Type
ChIP-seq
Organism
Mus musculus
Released
May 15, 2016
Updated
May 22, 2016
Submitter
Mingliang Zhang、 Jiashun Zheng、 Sheng Ding
Analysis Services
Analysis Services

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