| Literature DB >> 33750804 |
Kristina Sakers1,2, Yating Liu1,2, Lorida Llaci3, Scott M Lee1,2, Michael J Vasek1,2, Michael A Rieger1,2, Sean Brophy1,2, Eric Tycksen4, Renate Lewis5, Susan E Maloney2, Joseph D Dougherty6,7.
Abstract
Quaking RNA binding protein (QKI) is essential for oligodendrocyte development as myelination requires myelin basic protein mRNA regulation and localization by the cytoplasmic isoforms (e.g., QKI-6). QKI-6 is also highly expressed in astrocytes, which were recently demonstrated to have regulated mRNA localization. Here, we define the targets of QKI in the mouse brain via CLIPseq and we show that QKI-6 binds 3'UTRs of a subset of astrocytic mRNAs. Binding is also enriched near stop codons, mediated partially by QKI-binding motifs (QBMs), yet spreads to adjacent sequences. Using a viral approach for mosaic, astrocyte-specific gene mutation with simultaneous translating RNA sequencing (CRISPR-TRAPseq), we profile ribosome associated mRNA from QKI-null astrocytes in the mouse brain. This demonstrates a role for QKI in stabilizing CLIP-defined direct targets in astrocytes in vivo and further shows that QKI mutation disrupts the transcriptional changes for a discrete subset of genes associated with astrocyte maturation.Entities:
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Year: 2021 PMID: 33750804 PMCID: PMC7943582 DOI: 10.1038/s41467-021-21703-5
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919