Background: Somatic cell reprogramming is the process that allows differentiated cells to revert to a pluripotent state. In contrast to the extensively studied rewiring of epigenetic and transcriptional programs required for reprogramming, the dynamics of post-transcriptional changes and their associated regulatory mechanisms remain poorly understood. Here we study the dynamics of alternative splicing changes occurring during efficient reprogramming of mouse B cells into induced pluripotent stem (iPS) cells and compare them to those occurring during reprogramming of mouse embryonic fibroblasts. Results: We observe a significant overlap between alternative splicing changes detected in the two reprogramming systems, which are generally uncoup...
Alternative splicing functions to generate proteomic diversity and to regulate gene expression in hi...
The development of an organism from conception to adulthood requires the specification of cell types...
Alternative splicing (AS) greatly expands the coding capacities of genomes by allowing the generatio...
C.V. was recipient of an FPI-Severo Ochoa Fellowship from the Spanish Ministry of Economy and Compet...
Alternative splicing (AS) is a mechanism of post-transcriptional regulation that plays an important...
Abstract Background Along with the reorganization of epigenetic and transcriptional networks, somati...
Understanding how cell identity is established and maintained is one of the most exciting challenges...
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...
A fundamental step in embryo development is the transition through pluripotency. There are two known...
Advances in high-throughput profiling technologies have revolutionized our view of transcriptome com...
Reprogramming somatic cells into induced pluripotent stem cells (iPSCs) has provided huge insight in...
The regulation of pre-mRNA processing has important consequences for cell division and the control o...
SummaryReprogramming of somatic cells produces induced pluripotent stem cells (iPSCs) that are inval...
Incomplete knowledge of the mechanisms at work continues to hamper efforts to maximize reprogramming...
Alternative splicing functions to generate proteomic diversity and to regulate gene expression in hi...
The development of an organism from conception to adulthood requires the specification of cell types...
Alternative splicing (AS) greatly expands the coding capacities of genomes by allowing the generatio...
C.V. was recipient of an FPI-Severo Ochoa Fellowship from the Spanish Ministry of Economy and Compet...
Alternative splicing (AS) is a mechanism of post-transcriptional regulation that plays an important...
Abstract Background Along with the reorganization of epigenetic and transcriptional networks, somati...
Understanding how cell identity is established and maintained is one of the most exciting challenges...
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...
A fundamental step in embryo development is the transition through pluripotency. There are two known...
Advances in high-throughput profiling technologies have revolutionized our view of transcriptome com...
Reprogramming somatic cells into induced pluripotent stem cells (iPSCs) has provided huge insight in...
The regulation of pre-mRNA processing has important consequences for cell division and the control o...
SummaryReprogramming of somatic cells produces induced pluripotent stem cells (iPSCs) that are inval...
Incomplete knowledge of the mechanisms at work continues to hamper efforts to maximize reprogramming...
Alternative splicing functions to generate proteomic diversity and to regulate gene expression in hi...
The development of an organism from conception to adulthood requires the specification of cell types...
Alternative splicing (AS) greatly expands the coding capacities of genomes by allowing the generatio...