SummaryAlternative splicing is a major mechanism of controlling gene expression and protein diversity in higher eukaryotes. We report that the splicing factor SRSF10 functions during striated muscle development, myoblast differentiation, and glucose production both in cells and in mice. A combination of RNA-sequencing and molecular analysis allowed us to identify muscle-specific splicing events controlled by SRSF10 that are critically involved in striated muscle development. Inclusion of alternative exons 16 and 17 of Lrrfip1 is a muscle-specific event that is activated by SRSF10 and essential for myoblast differentiation. On the other hand, in mouse primary hepatocytes, PGC1α is a key target of SRSF10 that regulates glucose production by f...
Alternative splicing of pre-mRNA is a co- and post-transcriptional process that occurs in more than ...
Nutritional status is a powerful regulator of intracellular function. Dietary status can increase or...
Alternative splicing generates distinct mRNA variants and is essential for development, homeostasis,...
SummaryAlternative splicing is a major mechanism of controlling gene expression and protein diversit...
Alternative splicing is a major mechanism of controlling gene expression and protein diversity in hi...
During adipocyte differentiation, significant alternative splicing changes occur in association with...
SummaryCell-type-specific splicing generates numerous alternatively spliced transcripts playing impo...
SR family RNA binding proteins regulate splicing of nascent RNAs in vitro but their physiological ro...
Over the past decade, alternative splicing has been progressively recognized as a major mechanism re...
RNA splicing is an important component of gene expression that contributes immensely to the biologic...
Alternative splicing (AS) is a key component of gene expression programs that drive cellular differe...
One of the best-studied splicing regulator is SRSF1 (formerly known as SF2/ASF, Manley et al., 2010)...
The shuttling serine/arginine rich (SR) protein SRSF1 (previously known as SF2/ASF) is a splicing re...
Summary: The serine/arginine-rich (SR) family of splicing factors plays important roles in mRNA spli...
During development, transcriptional and post-transcriptional networks are coordinately regulated to ...
Alternative splicing of pre-mRNA is a co- and post-transcriptional process that occurs in more than ...
Nutritional status is a powerful regulator of intracellular function. Dietary status can increase or...
Alternative splicing generates distinct mRNA variants and is essential for development, homeostasis,...
SummaryAlternative splicing is a major mechanism of controlling gene expression and protein diversit...
Alternative splicing is a major mechanism of controlling gene expression and protein diversity in hi...
During adipocyte differentiation, significant alternative splicing changes occur in association with...
SummaryCell-type-specific splicing generates numerous alternatively spliced transcripts playing impo...
SR family RNA binding proteins regulate splicing of nascent RNAs in vitro but their physiological ro...
Over the past decade, alternative splicing has been progressively recognized as a major mechanism re...
RNA splicing is an important component of gene expression that contributes immensely to the biologic...
Alternative splicing (AS) is a key component of gene expression programs that drive cellular differe...
One of the best-studied splicing regulator is SRSF1 (formerly known as SF2/ASF, Manley et al., 2010)...
The shuttling serine/arginine rich (SR) protein SRSF1 (previously known as SF2/ASF) is a splicing re...
Summary: The serine/arginine-rich (SR) family of splicing factors plays important roles in mRNA spli...
During development, transcriptional and post-transcriptional networks are coordinately regulated to ...
Alternative splicing of pre-mRNA is a co- and post-transcriptional process that occurs in more than ...
Nutritional status is a powerful regulator of intracellular function. Dietary status can increase or...
Alternative splicing generates distinct mRNA variants and is essential for development, homeostasis,...