five

Altering metabolism programs cell identity via NAD+- dependent deacetylation

收藏
NIAID Data Ecosystem2026-05-02 收录
下载链接:
https://www.omicsdi.org/dataset/biostudies-other/S-SCDT-10_1038-S44318-025-00417-0
下载链接
链接失效反馈
官方服务:
资源简介:
Cells change their metabolic profiles in response to underlying gene regulatory networks, but how can alterations in metabolism encode specific transcriptional instructions? Here, we show that forcing a metabolic change in embryonic stem cells (ESCs) promotes a developmental identity that better approximates the inner cell mass (ICM) of the early mammalian blastocyst in cultures. This shift in cellular identity depends on inhibition of glycolysis and stimulation of oxidative phosphorylation (OXPHOS) triggered by replacement of D-glucose by D-galactose in ESC media. Enhanced OXPHOS in turn activates NAD+-dependent deacetylases of the sirtuin family, resulting in deacetylation of histones and key transcription factors to focus enhancer activity while reducing transcriptional noise, that result in a robustly enhanced ESC phenotype. This exploitation of a NAD+/NADH coenzyme coupled to OXPHOS as a means of programming lineage-specific transcription suggests new paradigms for how cells respond to alterations in their environment, and implies cellular rejuvenation exploits enzymatic activities for simultaneous activation of a discrete enhancer set alongside silencing genome-wide transcriptional noise.
创建时间:
2025-04-17
5,000+
优质数据集
54 个
任务类型
进入经典数据集
二维码
社区交流群

面向社区/商业的数据集话题

二维码
科研交流群

面向高校/科研机构的开源数据集话题

数据驱动未来

携手共赢发展

商业合作