Discovery of Small Molecules that Activate RNA Methylation through Cooperative Binding to the METTL3-14-WTAP Complex Active Site

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Selberg , S , Blokhina , D , Aatonen , M , Koivisto , P , Siltanen , A , Mervaala , E , Kankuri , E & Karelson , M 2019 , ' Discovery of Small Molecules that Activate RNA Methylation through Cooperative Binding to the METTL3-14-WTAP Complex Active Site ' , Cell Reports , vol. 26 , no. 13 , pp. 3762-+ . https://doi.org/10.1016/j.celrep.2019.02.100

Title: Discovery of Small Molecules that Activate RNA Methylation through Cooperative Binding to the METTL3-14-WTAP Complex Active Site
Author: Selberg, Simona; Blokhina, Daria; Aatonen, Maria; Koivisto, Pertti; Siltanen, Antti; Mervaala, Eero; Kankuri, Esko; Karelson, Mati
Contributor: University of Helsinki, Department of Pharmacology
University of Helsinki, Faculty of Biological and Environmental Sciences
University of Helsinki, Department of Pharmacology
University of Helsinki, Eero Mervaala / Principal Investigator
University of Helsinki, Esko Markus Kankuri / Principal Investigator
Date: 2019-03-26
Language: eng
Number of pages: 15
Belongs to series: Cell Reports
ISSN: 2211-1247
URI: http://hdl.handle.net/10138/301542
Abstract: Chemical modifications of RNA provide an additional, epitranscriptomic, level of control over cellular functions. N-6-methylated adenosines (m6As) are found in several types of RNA, and their amounts are regulated by methyltransferases and demethylases. One of the most important enzymes catalyzing generation of m6A on mRNA is the trimer N-6-methyltransferase METTL3-14-WTAP complex. Its activity has been linked to such critical biological processes as cell differentiation, proliferation, and death. We used in silico-based discovery to identify small-molecule ligands that bind to METTL3-14-WTAP and determined experimentally their binding affinity and kinetics, as well as their effect on enzymatic function. We show that these ligands serve as activators of the METTL3-14-WTAP complex.
Subject: RNA methylation
N6-adenosine-methyltransferases
N-6-methyladenosine
ligand binding
computer-aided design
epitranscriptomics
1182 Biochemistry, cell and molecular biology
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