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An autoinhibitory intramolecular interaction proof-reads RNA recognition by the essential splicing factor U2AF2.


ABSTRACT: The recognition of cis-regulatory RNA motifs in human transcripts by RNA binding proteins (RBPs) is essential for gene regulation. The molecular features that determine RBP specificity are often poorly understood. Here, we combined NMR structural biology with high-throughput iCLIP approaches to identify a regulatory mechanism for U2AF2 RNA recognition. We found that the intrinsically disordered linker region connecting the two RNA recognition motif (RRM) domains of U2AF2 mediates autoinhibitory intramolecular interactions to reduce nonproductive binding to weak Py-tract RNAs. This proofreading favors binding of U2AF2 at stronger Py-tracts, as required to define 3' splice sites at early stages of spliceosome assembly. Mutations that impair the linker autoinhibition enhance the affinity for weak Py-tracts result in promiscuous binding of U2AF2 along mRNAs and impact on splicing fidelity. Our findings highlight an important role of intrinsically disordered linkers to modulate RNA interactions of multidomain RBPs.

SUBMITTER: Kang HS 

PROVIDER: S-EPMC7132250 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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An autoinhibitory intramolecular interaction proof-reads RNA recognition by the essential splicing factor U2AF2.

Kang Hyun-Seo HS   Sánchez-Rico Carolina C   Ebersberger Stefanie S   Sutandy F X Reymond FXR   Busch Anke A   Welte Thomas T   Stehle Ralf R   Hipp Clara C   Schulz Laura L   Buchbender Andreas A   Zarnack Kathi K   König Julian J   Sattler Michael M  

Proceedings of the National Academy of Sciences of the United States of America 20200318 13


The recognition of <i>cis</i>-regulatory RNA motifs in human transcripts by RNA binding proteins (RBPs) is essential for gene regulation. The molecular features that determine RBP specificity are often poorly understood. Here, we combined NMR structural biology with high-throughput iCLIP approaches to identify a regulatory mechanism for U2AF2 RNA recognition. We found that the intrinsically disordered linker region connecting the two RNA recognition motif (RRM) domains of U2AF2 mediates autoinhi  ...[more]

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