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FMRP-mediated spatial regulation of physiologic NMD targets in neuronal cells.


ABSTRACT: In non-polarized cells, nonsense-mediated mRNA decay (NMD) generally begins during the translation of newly synthesized mRNAs after the mRNAs are exported to the cytoplasm. Binding of the FMRP translational repressor to UPF1 on NMD targets mainly inhibits NMD. However, in polarized cells like neurons, FMRP additionally localizes mRNAs to cellular projections. Here, we review the literature and evaluate available transcriptomic data to conclude that, in neurons, the translation of physiologic NMD targets bound by FMRP is partially inhibited until the mRNAs localize to projections. There, FMRP displacement in response to signaling induces a burst in protein synthesis followed by rapid mRNA decay.

SUBMITTER: Kurosaki T 

PROVIDER: S-EPMC10804635 | biostudies-literature | 2024 Jan

REPOSITORIES: biostudies-literature

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FMRP-mediated spatial regulation of physiologic NMD targets in neuronal cells.

Kurosaki Tatsuaki T   Rambout Xavier X   Maquat Lynne E LE  

Genome biology 20240123 1


In non-polarized cells, nonsense-mediated mRNA decay (NMD) generally begins during the translation of newly synthesized mRNAs after the mRNAs are exported to the cytoplasm. Binding of the FMRP translational repressor to UPF1 on NMD targets mainly inhibits NMD. However, in polarized cells like neurons, FMRP additionally localizes mRNAs to cellular projections. Here, we review the literature and evaluate available transcriptomic data to conclude that, in neurons, the translation of physiologic NMD  ...[more]

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