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Published on: August 21, 2014
Regulation of the Drosophila transcriptome by Pumilio and CCR4-NOT deadenylase
Rebecca J Haugen1, Catherine Barnier2, Nathan D Elrod3
1Department of Biochemistry, Molecular Biology and Biophysics, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Abstract:
The sequence-specific RNA-binding protein Pumilio controls development of Drosophila; however, the network of mRNAs that it regulates remains incompletely characterized. In this study, we utilize knockdown and knockout approaches coupled with RNA-Seq to measure the impact of Pumilio on the transcriptome of Drosophila cells. We also used an improved RNA co-immunoprecipitation method to identify Pumilio bound mRNAs in Drosophila embryos. Integration of these datasets with the content of Pumilio binding motifs across the transcriptome revealed novel direct Pumilio target genes involved in neural, muscle, wing, and germ cell development, and cellular proliferation. These genes include components of Wnt, TGF-beta, MAPK/ERK, and Notch signaling pathways, DNA replication, and lipid metabolism. Additionally, we identified the mRNAs regulated by the CCR4-NOT deadenylase complex, a key factor in Pumilio-mediated repression, and observed concordant regulation of Pumilio:CCR4-NOT target mRNAs. Computational modeling revealed that Pumilio binding, binding site number, density, and sequence context are important determinants of regulation. Moreover, the content of optimal synonymous codons in target mRNAs exhibits a striking functional relationship to Pumilio and CCR4-NOT regulation, indicating that the inherent translation efficiency and stability of the mRNA modulates their response to these trans-acting regulatory factors. Together, the results of this work provide new insights into the Pumilio regulatory network and mechanisms, and the parameters that influence the efficacy of Pumilio-mediated regulation.
Insights
The Pumilio protein regulates gene expression in Drosophila development. This study identifies new target genes and reveals how mRNA features influence Pumilio
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- The RNA-binding protein Pumilio is crucial for Drosophila development, but its full network of mRNA targets is not well understood.
- Understanding Pumilio's regulatory network is key to deciphering developmental processes.
Approach:
- Utilized knockdown and knockout strategies with RNA-Seq to analyze Pumilio's impact on the Drosophila transcriptome.
- Employed an enhanced RNA co-immunoprecipitation technique to identify Pumilio-bound mRNAs in Drosophila embryos.
- Integrated transcriptomic data with Pumilio binding motif analysis to discover direct targets.
Key Points:
- Identified novel direct Pumilio targets involved in neural, muscle, wing, and germ cell development, and proliferation.
- Discovered Pumilio targets within key signaling pathways (Wnt, TGF-beta, MAPK/ERK, Notch) and cellular processes like DNA replication and lipid metabolism.
- Found concordant regulation of Pumilio and CCR4-NOT deadenylase complex targets, highlighting their interconnected roles in mRNA repression.
- Computational modeling revealed Pumilio binding characteristics and mRNA codon content influence regulatory efficacy.
Conclusions:
- Provides a comprehensive view of the Pumilio regulatory network in Drosophila.
- Elucidates mechanisms of Pumilio-mediated gene regulation, including the role of mRNA translation efficiency and stability.
- Offers insights into factors determining the effectiveness of Pumilio and CCR4-NOT complex regulation.
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