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Combinatorial recognition of clustered RNA elements by the multidomain RNA-binding protein IMP3

  • Tim Schneider
  • , Lee Hsueh Hung
  • , Masood Aziz
  • , Anna Wilmen
  • , Stephanie Thaum
  • , Jacqueline Wagner
  • , Robert Janowski
  • , Simon Müller
  • , Silke Schreiner
  • , Peter Friedhoff
  • , Stefan Hüttelmaier
  • , Dierk Niessing
  • , Michael Sattler
  • , Andreas Schlundt
  • , Albrecht Bindereif
  • Justus-Liebig-Universität Gießen
  • Technical University of Munich
  • Helmholtz Zentrum München German Research Center for Environmental Health
  • Martin Luther University Halle-Wittenberg
  • University of Ulm
  • Johann Wolfgang Goethe University

Research output: Contribution to journalArticlepeer-review

77 Scopus citations

Abstract

How multidomain RNA-binding proteins recognize their specific target sequences, based on a combinatorial code, represents a fundamental unsolved question and has not been studied systematically so far. Here we focus on a prototypical multidomain RNA-binding protein, IMP3 (also called IGF2BP3), which contains six RNA-binding domains (RBDs): four KH and two RRM domains. We establish an integrative systematic strategy, combining single-domain-resolved SELEX-seq, motif-spacing analyses, in vivo iCLIP, functional validation assays, and structural biology. This approach identifies the RNA-binding specificity and RNP topology of IMP3, involving all six RBDs and a cluster of up to five distinct and appropriately spaced CA-rich and GGC-core RNA elements, covering a >100 nucleotide-long target RNA region. Our generally applicable approach explains both specificity and flexibility of IMP3-RNA recognition, allows the prediction of IMP3 targets, and provides a paradigm for the function of multivalent interactions with multidomain RNA-binding proteins in gene regulation.

Original languageEnglish
Article number2266
JournalNature Communications
Volume10
Issue number1
DOIs
StatePublished - 1 Dec 2019

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