Alternatively spliced isoforms of AUF1 regulate a miRNA-mRNA interaction differentially through their YGG motif

RNA Biol. 2021 Jun;18(6):843-853. doi: 10.1080/15476286.2020.1822637. Epub 2020 Sep 29.

Abstract

Proper base-pairing of a miRNA with its target mRNA is a key step in miRNA-mediated mRNA repression. RNA remodelling by RNA-binding proteins (RBPs) can improve access of miRNAs to their target mRNAs. The largest isoform p45 of the RBP AUF1 has previously been shown to remodel viral or AU-rich RNA elements. Here, we show that AUF1 is capable of directly promoting the binding of the miRNA let-7b to its target site within the 3'UTR of the POLR2D mRNA. Our data suggest this occurs in two ways. First, the helix-destabilizing RNA chaperone activity of AUF1 disrupts a stem-loop structure of the target mRNA and thus exposes the miRNA target site. Second, the RNA annealing activity of AUF1 drives hybridization of the miRNA and its target site within the mRNA. Interestingly, the RNA remodelling activities of AUF1 were found to be isoform-specific. AUF1 isoforms containing a YGG motif are competent RNA chaperones, whereas isoforms lacking the YGG motif are not. Overall, our study demonstrates that AUF1 has the ability to modulate a miRNA-target site interaction, thus revealing a new regulatory function for AUF1 proteins during post-transcriptional control of gene expression. Moreover, tests with other RBPs suggest the YGG motif acts as a key element of RNA chaperone activity.

Keywords: AUF1; RNA chaperone; RNA remodeling; YGG motif; miRNA-mediated gene silencing.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • 3' Untranslated Regions / genetics
  • Algorithms
  • Alternative Splicing*
  • Amino Acid Sequence
  • Gene Expression Regulation
  • Heterogeneous Nuclear Ribonucleoprotein D0 / genetics*
  • Heterogeneous Nuclear Ribonucleoprotein D0 / metabolism
  • Humans
  • Kinetics
  • MicroRNAs / genetics*
  • MicroRNAs / metabolism
  • Protein Binding
  • Protein Isoforms / genetics
  • Protein Isoforms / metabolism
  • RNA Polymerase II / genetics
  • RNA Polymerase II / metabolism
  • RNA, Messenger / genetics*
  • RNA, Messenger / metabolism
  • RNA-Binding Motifs / genetics*

Substances

  • 3' Untranslated Regions
  • HNRNPD protein, human
  • Heterogeneous Nuclear Ribonucleoprotein D0
  • MicroRNAs
  • Protein Isoforms
  • RNA, Messenger
  • mirnlet7 microRNA, human
  • POLR2D protein, human
  • RNA Polymerase II

Grants and funding

This work was supported by the Bundesministerium für Bildung und Forschung [03Z22HN22]; Deutsche Forschungsgemeinschaft [BE1885/12-1]; Deutsche Forschungsgemeinschaft [391498659, RTG 2467]; European Regional Development Fund [ZS/2016/04/78115]; Studienstiftung des Deutschen Volkes.