SummaryAlternative RNA splicing (AS) regulates proteome diversity, including isoform-specific expression of several pluripotency genes. Here, we integrated global gene expression and proteomic analyses and identified a molecular signature suggesting a central role for AS in maintaining human pluripotent stem cell (hPSC) self-renewal. We demonstrate that the splicing factor SFRS2 is an OCT4 target gene required for pluripotency. SFRS2 regulates AS of the methyl-CpG binding protein MBD2, whose isoforms play opposing roles in maintenance of and reprogramming to pluripotency. Although both MDB2a and MBD2c are enriched at the OCT4 and NANOG promoters, MBD2a preferentially interacts with repressive NuRD chromatin remodeling factors and promotes h...
Advances in high-throughput profiling technologies have revolutionized our view of transcriptome com...
The elucidation of a code for regulated splicing has been a long-standing goal in understanding the ...
Ectopic expression of specific factors such as Oct4, Sox2, and Klf4 (OSK) is sufficient to reprogram...
SummaryAlternative RNA splicing (AS) regulates proteome diversity, including isoform-specific expres...
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 dise...
[eng] A fundamental step in embryo development is the transition through pluripotency. There are two...
SummaryAlternative splicing (AS) is a key process underlying the expansion of proteomic diversity an...
International audienceReprogramming somatic cells into induced pluripotent stem cells (iPSCs) has pr...
Background: Somatic cell reprogramming is the process that allows differentiated cells to revert to ...
Pluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response to dif...
Multiple levels of control are in play to regulate pluripotency and differentiation in human embryon...
SummaryPluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response...
Somatic cells are reprogrammed with reprogramming factors to generate induced pluripotent stem cells...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
Advances in high-throughput profiling technologies have revolutionized our view of transcriptome com...
The elucidation of a code for regulated splicing has been a long-standing goal in understanding the ...
Ectopic expression of specific factors such as Oct4, Sox2, and Klf4 (OSK) is sufficient to reprogram...
SummaryAlternative RNA splicing (AS) regulates proteome diversity, including isoform-specific expres...
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 dise...
[eng] A fundamental step in embryo development is the transition through pluripotency. There are two...
SummaryAlternative splicing (AS) is a key process underlying the expansion of proteomic diversity an...
International audienceReprogramming somatic cells into induced pluripotent stem cells (iPSCs) has pr...
Background: Somatic cell reprogramming is the process that allows differentiated cells to revert to ...
Pluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response to dif...
Multiple levels of control are in play to regulate pluripotency and differentiation in human embryon...
SummaryPluripotent embryonic stem cells (ESCs) maintain self-renewal while ensuring a rapid response...
Somatic cells are reprogrammed with reprogramming factors to generate induced pluripotent stem cells...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
Advances in high-throughput profiling technologies have revolutionized our view of transcriptome com...
The elucidation of a code for regulated splicing has been a long-standing goal in understanding the ...
Ectopic expression of specific factors such as Oct4, Sox2, and Klf4 (OSK) is sufficient to reprogram...