SummaryAlternative splicing (AS) is a key process underlying the expansion of proteomic diversity and the regulation of gene expression. Here, we identify an evolutionarily conserved embryonic stem cell (ESC)-specific AS event that changes the DNA-binding preference of the forkhead family transcription factor FOXP1. We show that the ESC-specific isoform of FOXP1 stimulates the expression of transcription factor genes required for pluripotency, including OCT4, NANOG, NR5A2, and GDF3, while concomitantly repressing genes required for ESC differentiation. This isoform also promotes the maintenance of ESC pluripotency and contributes to efficient reprogramming of somatic cells into induced pluripotent stem cells. These results reveal a pivotal ...
Background: Somatic cell reprogramming is the process that allows differentiated cells to revert to ...
The elucidation of a code for regulated splicing has been a long-standing goal in understanding the ...
Pluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response to dif...
SummaryAlternative splicing (AS) is a key process underlying the expansion of proteomic diversity an...
In this issue of Cell, Gabut and colleagues (2011) identify a new splice variant of FOXP1 that direc...
SummaryAlternative splicing (AS) plays a critical role in cell fate transitions, development, and di...
Alternative splicing (AS) plays a critical role in cell fate transitions, development, and disease. ...
Alternative splicing (AS) is a powerful mechanism for the generation of functional and regulatory di...
Abstract Background Understanding the embryonic stem cell (ESC) fate decision between self-renewal a...
A fundamental step in embryo development is the transition through pluripotency. There are two known...
Abstract Forkhead box (Fox) transcription factors play important roles in mammalian development and ...
Reprogramming somatic cells into induced pluripotent stem cells (iPSCs) has provided huge insight in...
Alternative splicing (AS) greatly expands the coding capacities of genomes by allowing the generatio...
SummaryAlternative RNA splicing (AS) regulates proteome diversity, including isoform-specific expres...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
Background: Somatic cell reprogramming is the process that allows differentiated cells to revert to ...
The elucidation of a code for regulated splicing has been a long-standing goal in understanding the ...
Pluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response to dif...
SummaryAlternative splicing (AS) is a key process underlying the expansion of proteomic diversity an...
In this issue of Cell, Gabut and colleagues (2011) identify a new splice variant of FOXP1 that direc...
SummaryAlternative splicing (AS) plays a critical role in cell fate transitions, development, and di...
Alternative splicing (AS) plays a critical role in cell fate transitions, development, and disease. ...
Alternative splicing (AS) is a powerful mechanism for the generation of functional and regulatory di...
Abstract Background Understanding the embryonic stem cell (ESC) fate decision between self-renewal a...
A fundamental step in embryo development is the transition through pluripotency. There are two known...
Abstract Forkhead box (Fox) transcription factors play important roles in mammalian development and ...
Reprogramming somatic cells into induced pluripotent stem cells (iPSCs) has provided huge insight in...
Alternative splicing (AS) greatly expands the coding capacities of genomes by allowing the generatio...
SummaryAlternative RNA splicing (AS) regulates proteome diversity, including isoform-specific expres...
Understanding the molecular mechanisms controlling pluripotency in embryonic stem cells (ESCs) is of...
Background: Somatic cell reprogramming is the process that allows differentiated cells to revert to ...
The elucidation of a code for regulated splicing has been a long-standing goal in understanding the ...
Pluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response to dif...