Embryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging regulatory network. Although the transcriptional regulatory mechanisms involved have been investigated extensively, post-transcriptional regulation is still poorly understood. Here we describe a critical role of the THO complex in ESC self-renewal and differentiation. We show that THO preferentially interacts with pluripotency gene transcripts through Thoc5, and is required for self-renewal at least in part by regulating their export and expression. During differentiation, THO loses its interaction with those transcripts due to reduced Thoc5 expression, leading to decreased expression of pluripotency proteins that facilitates exit from self-renewal. T...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
SummaryFactors that sustain self-renewal of mouse embryonic stem cells (ESCs) are well described. In...
Embryonic stem cells and induced pluripotent stem cells hold great promise for regenerative medicine...
Embryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging regulator...
SummaryEmbryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging re...
Embryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging regulator...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
Embryonic stem (ES) cells are of great interest as a model system for studying early developmental p...
Embryonic stem cells (ESCs) are pluripotent and have unlimited self-renewal capacity. Although pluri...
The master transcription factors play integral roles in the pluripotency transcription circuitry of ...
SummaryThe embryonic stem (ES) cell transcriptional and chromatin-modifying networks are critical fo...
Pluripotent embryonic stem cells (ESCs) self-renew or differentiate into all tissues of the developi...
SummaryThe transcription factors OCT4, SOX2, and NANOG have essential roles in early development and...
The pluripotent state of embryonic stem cells (ESCs) provides a unique perspective on regulatory pro...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
SummaryFactors that sustain self-renewal of mouse embryonic stem cells (ESCs) are well described. In...
Embryonic stem cells and induced pluripotent stem cells hold great promise for regenerative medicine...
Embryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging regulator...
SummaryEmbryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging re...
Embryonic stem cell (ESC) self-renewal and differentiation are governed by a broad-ranging regulator...
It has been known that three core transcription factors (TFs), NANOG, OCT4, and SOX2, collaborate to...
SummaryMuch attention has focused on a small set of transcription factors that maintain human or mou...
Embryonic stem (ES) cells are of great interest as a model system for studying early developmental p...
Embryonic stem cells (ESCs) are pluripotent and have unlimited self-renewal capacity. Although pluri...
The master transcription factors play integral roles in the pluripotency transcription circuitry of ...
SummaryThe embryonic stem (ES) cell transcriptional and chromatin-modifying networks are critical fo...
Pluripotent embryonic stem cells (ESCs) self-renew or differentiate into all tissues of the developi...
SummaryThe transcription factors OCT4, SOX2, and NANOG have essential roles in early development and...
The pluripotent state of embryonic stem cells (ESCs) provides a unique perspective on regulatory pro...
SummaryTranscription factors (TFs) and their specific interactions with targets are crucial for spec...
SummaryFactors that sustain self-renewal of mouse embryonic stem cells (ESCs) are well described. In...
Embryonic stem cells and induced pluripotent stem cells hold great promise for regenerative medicine...