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Pnrc2 regulates 3’UTR-mediated decay of segmentation clock-associated transcripts during zebrafish segmentation.

Authors :
Gallagher, Thomas L.
Tietz, Kiel T.
Morrow, Zachary T.
McCammon, Jasmine M.
Goldrich, Michael L.
Derr, Nicolas L.
Amacher, Sharon L.
Source :
Developmental Biology. Sep2017, Vol. 429 Issue 1, p225-239. 15p.
Publication Year :
2017

Abstract

Vertebrate segmentation is controlled by the segmentation clock, a molecular oscillator that regulates gene expression and cycles rapidly. The expression of many genes oscillates during segmentation, including hairy/Enhancer of split-related ( her or Hes ) genes, which encode transcriptional repressors that auto-inhibit their own expression, and deltaC ( dlc ), which encodes a Notch ligand. We previously identified the tortuga (tor) locus in a zebrafish forward genetic screen for genes involved in cyclic transcript regulation and showed that cyclic transcripts accumulate post-splicing in tor mutants. Here we show that cyclic mRNA accumulation in tor mutants is due to loss of pnrc2 , which encodes a proline-rich nuclear receptor co-activator implicated in mRNA decay. Using an inducible in vivo reporter system to analyze transcript stability, we find that the her1 3’UTR confers Pnrc2-dependent instability to a heterologous transcript. her1 mRNA decay is Dicer-independent and likely employs a Pnrc2-Upf1-containing mRNA decay complex. Surprisingly, despite accumulation of cyclic transcripts in pnrc2 -deficient embryos, we find that cyclic protein is expressed normally. Overall, we show that Pnrc2 promotes 3’UTR-mediated decay of developmentally-regulated segmentation clock transcripts and we uncover an additional post-transcriptional regulatory layer that ensures oscillatory protein expression in the absence of cyclic mRNA decay. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00121606
Volume :
429
Issue :
1
Database :
Academic Search Index
Journal :
Developmental Biology
Publication Type :
Academic Journal
Accession number :
124577823
Full Text :
https://doi.org/10.1016/j.ydbio.2017.06.024