[PDF][PDF] Alternative splicing of neuronal differentiation factor TRF2 regulated by HNRNPH1/H2

I Grammatikakis, P Zhang, AC Panda, J Kim… - Cell reports, 2016 - cell.com
I Grammatikakis, P Zhang, AC Panda, J Kim, S Maudsley, K Abdelmohsen, X Yang…
Cell reports, 2016cell.com
During neuronal differentiation, use of an alternative splice site on the rat telomere repeat-
binding factor 2 (TRF2) mRNA generates a short TRF2 protein isoform (TRF2-S) capable of
derepressing neuronal genes. However, the RNA-binding proteins (RBPs) controlling this
splicing event are unknown. Here, using affinity pull-down analysis, we identified
heterogeneous nuclear ribonucleoproteins H1 and H2 (HNRNPH) as RBPs specifically
capable of interacting with the spliced RNA segment (exon 7) of Trf2 pre-mRNA. HNRNPH …
Summary
During neuronal differentiation, use of an alternative splice site on the rat telomere repeat-binding factor 2 (TRF2) mRNA generates a short TRF2 protein isoform (TRF2-S) capable of derepressing neuronal genes. However, the RNA-binding proteins (RBPs) controlling this splicing event are unknown. Here, using affinity pull-down analysis, we identified heterogeneous nuclear ribonucleoproteins H1 and H2(HNRNPH) as RBPs specifically capable of interacting with the spliced RNA segment (exon 7) of Trf2 pre-mRNA. HNRNPH proteins prevent the production of the short isoform of Trf2 mRNA, as HNRNPH silencing selectively elevates TRF2-S levels. Accordingly, HNRNPH levels decline while TRF2-S levels increase during neuronal differentiation. In addition, CRISPR/Cas9-mediated deletion of hnRNPH2 selectively accelerates the NGF-triggered differentiation of rat pheochromocytoma cells into neurons. In sum, HNRNPH is a splicing regulator of Trf2 pre-mRNA that prevents the expression of TRF2-S, a factor implicated in neuronal differentiation.
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