Transcriptomics

Dataset Information

0

KLF4 inhibits early neural differentiation of ESCs by coordinating specific 3D chromatin structure


ABSTRACT: Neural differentiation of embryonic stem cells (ESCs) requires precisely orchestrated gene regulation, a process governed in part by changes in 3D chromatin structure. How these changes regulate gene expression in this context remains unclear. In this study, we observed enrichment of the transcription factor KLF4 at some poised or closed enhancers at TSS-linked regions of genes associated with neural differentiation, such as Pax6. Combination analysis employing ChIP, HiChIP and RNA-seq data indicated that KLF4 loss in ESCs induced changes in 3D chromatin structure, including increased chromatin interaction loops between neural differentiation-associated genes and active enhancers. And changes of chromatin structure upregulated expression of neural differentiation-associated genes and promoted early neural differentiation. This study reveals that KLF4 has a differentiation inhibitory effect in regulating 3D chromatin structure and suggests KLF4 inhibits early neural differentiation by regulation of 3D chromatin structure, which is a new mechanism of early neural differentiation.

ORGANISM(S): Mus musculus

PROVIDER: GSE194068 | GEO | 2022/06/01

REPOSITORIES: GEO

Dataset's files

Source:
Action DRS
Other
Items per page:
1 - 1 of 1

Similar Datasets

2022-09-20 | GSE213418 | GEO
| PRJNA798967 | ENA
| PRJNA880652 | ENA
2021-03-01 | GSE165725 | GEO
| PRJNA695544 | ENA
2019-09-03 | PXD014631 | Pride
2015-05-21 | E-GEOD-61264 | biostudies-arrayexpress
2021-10-20 | GSE159623 | GEO
2021-10-20 | GSE159622 | GEO
2021-10-20 | GSE159621 | GEO