Long noncoding RNAs (lncRNAs) are abundant in the mammalian transcriptome, and many are specifically expressed in the brain. We have identified a group of lncRNAs, including rhabdomyosarcoma 2-associated transcript (RMST), which are indispensable for neurogenesis. Here, we provide mechanistic insight into the role of human RMST in modulating neurogenesis. RMST expression is specific to the brain, regulated by the transcriptional repressor REST, and increases during neuronal differentiation, indicating a role in neurogenesis. RMST physically interacts with SOX2, a transcription factor known to regulate neural fate. RMST and SOX2 coregulate a large pool of downstream genes implicated in neurogenesis. Through RNA interference and genome-wide S...
SOX2 is a pan-neural transcription factor expressed in neural precursor cells (NPCs) independently o...
The development of the central nervous system (CNS) is a complex orchestration of stem cells, transc...
The extraordinary cellular diversity and the complex connections established within different cells ...
Long noncoding RNAs (lncRNAs) are abundant in the mammalian transcriptome, and many are specifically...
The abundance of non-coding RNAs (ncRNAs) and its various roles in human development have brought re...
The abundance of non-coding RNAs (ncRNAs) and its various roles in human development have brought re...
<div><p>The complex architecture of adult brain derives from tightly regulated migration and differe...
The complex architecture of adult brain derives from tightly regulated migration and differentiation...
The transcription factor Sox2 controls the fate of pluripotent stem cells and neural stem cells. Thi...
The transcription factor Sox2 controls the fate of pluripotent stem cells and neural stem cells. Th...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
The transcription factor Sox2 controls the fate of pluripotent stem cells and neural stem cells. Thi...
Long noncoding RNAs (lncRNAs) have been described in cell lines and various whole tissues, but lncRN...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
SOX2 is a pan-neural transcription factor expressed in neural precursor cells (NPCs) independently o...
The development of the central nervous system (CNS) is a complex orchestration of stem cells, transc...
The extraordinary cellular diversity and the complex connections established within different cells ...
Long noncoding RNAs (lncRNAs) are abundant in the mammalian transcriptome, and many are specifically...
The abundance of non-coding RNAs (ncRNAs) and its various roles in human development have brought re...
The abundance of non-coding RNAs (ncRNAs) and its various roles in human development have brought re...
<div><p>The complex architecture of adult brain derives from tightly regulated migration and differe...
The complex architecture of adult brain derives from tightly regulated migration and differentiation...
The transcription factor Sox2 controls the fate of pluripotent stem cells and neural stem cells. Thi...
The transcription factor Sox2 controls the fate of pluripotent stem cells and neural stem cells. Th...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
The transcription factor Sox2 controls the fate of pluripotent stem cells and neural stem cells. Thi...
Long noncoding RNAs (lncRNAs) have been described in cell lines and various whole tissues, but lncRN...
Transcriptome analysis of somatic stem cells and their progeny is fundamental to identify new factor...
SOX2 is a pan-neural transcription factor expressed in neural precursor cells (NPCs) independently o...
The development of the central nervous system (CNS) is a complex orchestration of stem cells, transc...
The extraordinary cellular diversity and the complex connections established within different cells ...