Study / S3MZ5GYEG2019-05-31

A massively parallel 3′ UTR reporter assay reveals relationships between nucleotide content, sequence conservation, and mRNA destabilization

Adam J. Litterman, Robin Kageyama, Olivier Le Tonqueze, Wenxue Zhao, John D. Gagnon et al.

About this study

Compared to coding sequences, untranslated regions of the transcriptome are not well conserved, and functional annotation of these sequences is challenging. Global relationships between nucleotide composition of 3′ UTR sequences and their sequence conservation have been appreciated since mammalian genomes were first sequenced, but the functional relevance of these patterns remain unknown. We systematically measured the effect on gene expression of the sequences of more than 25,000 RNA-binding protein (RBP) binding sites in primary mouse T cells using a massively parallel reporter assay. GC-rich sequences were destabilizing of reporter mRNAs and come from more rapidly evolving regions of the genome. These sequences were more likely to be folded in vivo and contain a number of structural motifs that reduced accumulation of a heterologous reporter protein. Comparison of full-length 3′ UTR sequences across vertebrate phylogeny revealed that strictly conserved 3′ UTRs were GC-poor and enriched in genes associated with organismal development. In contrast, rapidly evolving 3′ UTRs tended to be GC-rich and derived from genes involved in metabolism and immune responses. Cell-essential genes had lower GC content in their 3′ UTRs, suggesting a connection between unstructured mRNA noncoding sequences and optimal protein production. By reducing gene expression, GC-rich RBP-occupied sequences act as a rapidly evolving substrate for gene regulatory interactions.

Full author list & citation

Adam J. Litterman, Robin Kageyama, Olivier Le Tonqueze, Wenxue Zhao, John D. Gagnon, Hani Goodarzi, David J. Erle, K. Mark Ansel. A massively parallel 3′ UTR reporter assay reveals relationships between nucleotide content, sequence conservation, and mRNA destabilization. 2019-05-31. https://doi.org/10.1101/gr.242552.118

Experiments 1

E46Z13R3D

Th2 fast-UTR MPRA without PMA/ionomycin

A retroviral GFP 3′-UTR reporter library containing approximately 27,000 70-nt mouse RBP-occupied and control sequences was transduced into in-vitro differentiated primary mouse Th2 cells. This experiment table represents the Th2 minus PMA/ionomycin condition and reports insert-mediated steady-state mRNA abundance from normalized RNA/DNA ratios.

3' UTR / RNA Stability MPRA (MPRAu)Mousemm10
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Raw source data 3 files

Original supplemental and deposited inputs retained for this study. Download files individually or together as a ZIP; nested folders are preserved. Source reuse terms apply, and sequencing reads may be omitted.

Download all 3 files (ZIP)PRJNA516474_SRA_runinfo.csvREADME.txtSupplemental_Table_1.xlsx

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