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RNA binding proteins play an important role in regulating alternative pre-mRNA splicing and in turn cellular gene expression. Polypyrimidine tract binding proteins, PTBP1 and PTBP2, are paralogous RNA binding proteins that play a critical role in the process of neuronal differentiation and maturatio...
ORGANISM(S): Homo sapiens (Human) 
2022-01-20 | PXD029899 | Pride
To assess the requirement of Ptbp2 for alternative processing of RNA in mouse brain RNA from the cortex of 3 wild type and 3 Ptbp2 KO E18.5 mice. One array per biological replicate. Comparative analysis
ORGANISM(S): Mus musculus 
To assess the requirement of Ptbp2 for alternative mRNA expression in mouse brain RNA from the cortex of 4 wild type and 4 Ptbp2 KO E18.5 mice. One array per sample (biological replicate), 8 arrays total.
ORGANISM(S): Mus musculus 
Two polypyrimidine tract RNA-binding proteins (PTBs), one near-ubiquitously expressed (Ptbp1) and another highly tissue-restricted (Ptbp2), regulate RNA in interrelated but incompletely understood ways. Ptbp1, a splicing regulator, is replaced in the brain and differentiated neuronal cell lines by P...
ORGANISM(S): Mus musculus 
PTBP1 and PTBP2 are highly conserved paralogs, yet exhibit distinct splicing patterns. Here we use mass spectrometry to show that PTBP1 and PTBP2 interact with distinct proteins and undergo distinct post translational modifications under splicing conditions in neuronal nuclear extract.
ORGANISM(S): Homo sapiens (Human) 
2026-02-09 | PXD058740 | Pride
The splicing regulator PTBP2 controls a program of embryonic splicing required for neuronal maturation. The splicing regulatory proteins PTBP1 and PTBP2 show distinct temporal expression profiles in the developing brain. Neuronal progenitor cells predominantly express PTBP1, whereas developing neuro...
ORGANISM(S): Mus musculus 
The neuronal RNA-binding protein Ptbp2 regulates neuronal differentiation by modulating alternative splicing programs in the nucleus. Such programs contribute to axonogenesis by adjusting the levels of protein isoforms involved in axon growth and branching. While its functions in alternative splicin...
ORGANISM(S): Mus musculus (Mouse) 
2023-07-13 | PXD035196 | Pride
PTBP2 knock-down RNA-seq from human iPSC-neurons
Human Clariom D Transcriptome profiling of microRNA-mediated neuronal reprogramming with PTBP2 knockdown
Axonogenesis is coordinated by alternative splicing programming and splicing regulator PTBP2
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