INO80 complex in the core regulatory network governing ESC self-renewal
收藏官方服务:
资源简介:
INO80 complex in the core regulatory network governing ESC self-renewal
应用场景:
创建时间:
2014-05-16
相关数据集
Zfx controls self-renewal of human embryonic stem cells
Previously, we identified the transcription factor Zfx as a key regulator of self-renewal in murine ESCs. Here we extend those findings to human ESCs. Zfx knockdown in hESCs hindered clonal growth and
NIAID Data Ecosystem70
Tip5/Baz2a Regulates Chromatin Architecture and Gene Expression to Maintain Self-renewal and Pluripotency of Embryonic Stem Cells [microarray]
It is unclear how gene networks that regulate self-renewal and pluripotency of embryonic stem (ES) cells are established. We searched for factors that contribute to forming functional chromatin archit
NIAID Data Ecosystem50
Differentially expressed lncRNAs in hDPSCs between the OCT4A-overexpressing and vector groups.. Differentially expressed lncRNAs in hDPSCs between the OCT4A-overexpressing and vector groups.
To determine whether lncRNAs were involved in the OCT4A-related network that regulates the self-renewal of hDPSCs, human lncRNA microarrays were used to identify the lncRNA expression profiles in OCT4
NIAID Data Ecosystem20
A distinct isoform of ZNF207 controls self-renewal and pluripotency of human embryonic stem cells. A distinct isoform of ZNF207 controls self-renewal and pluripotency of human embryonic stem cells
This SuperSeries is composed of the SubSeries listed below. Overall design: Refer to individual Series
NIAID Data Ecosystem60
Macrophage-secreted CSF1 transmits a calorie restriction self-renewing signal to mammary epithelial stem cells
Calorie restriction (CR) enhances stem cell self-renewal in various tissues, including the mammary gland. The hypothesis propelling this study states that similarly to their intestinal counterparts, m
NIAID Data Ecosystem30



