During postnatal development the heart undergoes a rapid and dramatic transition to adult function through transcriptional and post-transcriptional mechanisms, including alternative splicing (AS). Here we perform deep RNA-sequencing on RNA from cardiomyocytes and cardiac fibroblasts to conduct a high-resolution analysis of transcriptome changes during postnatal mouse heart development. We reveal extensive changes in gene expression and AS that occur primarily between postnatal days 1 and 28. Cardiomyocytes and cardiac fibroblasts show reciprocal regulation of gene expression reflecting differences in proliferative capacity, cell adhesion functions and mitochondrial metabolism. We further demonstrate that AS plays a role in vesicular traffic...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
Heart maturation is an essentially biological process for neonatal heart transition to adult heart, ...
The RNA binding protein Celf1 regulates alternative splicing in the nucleus and mRNA stability and t...
The RNA binding protein Celf1 regulates alternative splicing in the nucleus and mRNA stability and t...
AbstractSR proteins serve multiple roles in the posttranscriptional control of gene expression, incl...
During development, transcriptional and post-transcriptional networks are coordinately regulated to ...
AbstractThe transition from juvenile to adult life is accompanied by programmed remodeling in many t...
AbstractCUG-BP, Elav-like family member 1 (CELF1) is a multi-functional RNA binding protein that reg...
During cardiac development and pathological remodeling, there is a transcriptome maturation and remo...
Advancements in genomics, bioinformatics, and genome editing have uncovered new dimensions in gene r...
<div><p>Members of the CUG-BP, Elav-like family (CELF) regulate alternative splicing in the heart. I...
AbstractCUG-BP, Elav-like family member 1 (CELF1) is a multi-functional RNA binding protein that reg...
Members of the CUG-BP, Elav-like family (CELF) regulate alternative splicing in the heart. In MHC-CE...
CUG-BP, Elav-like family member 1 (CELF1) is a multi-functional RNA binding protein that regulates p...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
Heart maturation is an essentially biological process for neonatal heart transition to adult heart, ...
The RNA binding protein Celf1 regulates alternative splicing in the nucleus and mRNA stability and t...
The RNA binding protein Celf1 regulates alternative splicing in the nucleus and mRNA stability and t...
AbstractSR proteins serve multiple roles in the posttranscriptional control of gene expression, incl...
During development, transcriptional and post-transcriptional networks are coordinately regulated to ...
AbstractThe transition from juvenile to adult life is accompanied by programmed remodeling in many t...
AbstractCUG-BP, Elav-like family member 1 (CELF1) is a multi-functional RNA binding protein that reg...
During cardiac development and pathological remodeling, there is a transcriptome maturation and remo...
Advancements in genomics, bioinformatics, and genome editing have uncovered new dimensions in gene r...
<div><p>Members of the CUG-BP, Elav-like family (CELF) regulate alternative splicing in the heart. I...
AbstractCUG-BP, Elav-like family member 1 (CELF1) is a multi-functional RNA binding protein that reg...
Members of the CUG-BP, Elav-like family (CELF) regulate alternative splicing in the heart. In MHC-CE...
CUG-BP, Elav-like family member 1 (CELF1) is a multi-functional RNA binding protein that regulates p...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
The role of alternative splicing in self-renewal, pluripotency and tissue lineage specification of h...
Heart maturation is an essentially biological process for neonatal heart transition to adult heart, ...