The splicing regulator PTBP1 controls the activity of the transcription factor Pbx1 during neuronal differentiation.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 26705333.
- Also identified by DOI 10.7554/eLife.09268 and PMC identifier 4755740.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
The RNA-binding proteins PTBP1 and PTBP2 control programs of alternative splicing during neuronal development. PTBP2 was found to maintain embryonic splicing patterns of many synaptic and cytoskeletal proteins during differentiation of neuronal progenitor cells (NPCs) into early neurons. However, the role of the earlier PTBP1 program in embryonic stem cells (ESCs) and NPCs was not clear. We show that PTBP1 controls a program of neuronal gene expression that includes the transcription factor Pbx1. We identify exons specifically regulated by PTBP1 and not PTBP2 as mouse ESCs differentiate into NPCs. We find that PTBP1 represses Pbx1 exon 7 and the expression of the neuronal Pbx1a isoform in ESCs. Using CRISPR-Cas9 to delete regulatory elements for exon 7, we induce Pbx1a expression in ESCs, finding that this activates transcription of neuronal genes. Thus, PTBP1 controls the activity of Pbx1 to suppress its neuronal transcriptional program prior to induction of NPC development.
Medical subject headings
- Cell Differentiation
- Embryonic Stem Cells
- Heterogeneous-Nuclear Ribonucleoproteins
- Homeodomain Proteins
- Neurons
- Polypyrimidine Tract-Binding Protein
- Transcription Factors