RNA and DNA G-quadruplexes bind to human dicer and inhibit its activity

Author:

Koralewska NataliaORCID,Szczepanska AgnieszkaORCID,Ciechanowska KingaORCID,Wojnicka MartaORCID,Pokornowska MariaORCID,Milewski Marek C.ORCID,Gudanis DorotaORCID,Baranowski DanielORCID,Nithin ChandranORCID,Bujnicki Janusz M.ORCID,Gdaniec ZofiaORCID,Figlerowicz MarekORCID,Kurzynska-Kokorniak AnnaORCID

Abstract

AbstractGuanine (G)-rich single-stranded nucleic acids can adopt G-quadruplex structures. Accumulating evidence indicates that G-quadruplexes serve important regulatory roles in fundamental biological processes such as DNA replication, transcription, and translation, while aberrant G-quadruplex formation is linked to genome instability and cancer. Understanding the biological functions played by G-quadruplexes requires detailed knowledge of their protein interactome. Here, we report that both RNA and DNA G-quadruplexes are bound by human Dicer in vitro. Using in vitro binding assays, mutation studies, and computational modeling we demonstrate that G-quadruplexes can interact with the Platform–PAZ–Connector helix cassette of Dicer, the region responsible for anchoring microRNA precursors (pre-miRNAs). Consequently, we show that G-quadruplexes efficiently and stably inhibit the cleavage of pre-miRNA by Dicer. Our data highlight the potential of human Dicer for binding of G-quadruplexes and allow us to propose a G-quadruplex-driven sequestration mechanism of Dicer regulation.

Funder

Narodowe Centrum Nauki

Narodowym Centrum Nauki

Ministry of Science and Higher Education

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Cellular and Molecular Neuroscience,Pharmacology,Molecular Biology,Molecular Medicine

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