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Identification of a selective DDX3X inhibitor with newly developed quantitative high-throughput RNA helicase assays.

Authors :
Nakao, Shoichi
Nogami, Masahiro
Iwatani, Misa
Imaeda, Toshihiro
Ito, Masahiro
Tanaka, Toshio
Tawada, Michiko
Endo, Satoshi
Cary, Douglas R.
Ohori, Momoko
Imaeda, Yasuhiro
Kawamoto, Tomohiro
Aparicio, Samuel
Nakanishi, Atsushi
Araki, Shinsuke
Source :
Biochemical & Biophysical Research Communications. Mar2020, Vol. 523 Issue 3, p795-801. 7p.
Publication Year :
2020

Abstract

The DEAD-box family of RNA helicases plays essential roles in both transcriptional and translational mRNA degradation; they unwind short double-stranded RNA by breaking the RNA–RNA interactions. Two DEAD-box RNA helicases, eukaryotic translation initiation factor 4A3 (eIF4A3) and DEAD-box helicase 3 (DDX3X), show high homology in the ATP-binding region and are considered key molecules for cancer progression. Several small molecules that target eIF4A3 and DDX3X have been reported to inhibit cancer cell growth; however, more potent compounds are required for cancer therapeutics, and there is a critical need for high-throughput assays to screen for RNA helicase inhibitors. In this study, we developed novel fluorescence resonance energy transfer-based high-throughput RNA helicase assays for eIF4A3 and DDX3X. Using these assays, we identified several eIF4A3 allosteric inhibitors whose inhibitory effect on eIF4A3 ATPase showed a strong correlation with inhibitory effect on helicase activity. From 102 compounds that exhibited eIF4A3 ATPase inhibition, we identified a selective DDX3X inhibitor, C1, which showed stronger inhibition of DDX3X than of eIF4A3. Small-molecule helicase inhibitors can be valuable for clarifying the molecular machinery of DEAD-box RNA helicases. The high-throughput quantitative assays established here should facilitate the evaluation of the helicase inhibitory activity of compounds. • High-throughput RNA helicase assays were developed for eIF4A3 and DDX3X. • ATPase and helicase activity were well-correlated for allosteric eIF4A3 inhibitors. • Screening with the DDX3X helicase assay identified a selective DDX3X inhibitor. • These new helicase assays are valuable tools for identifying potent inhibitors. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0006291X
Volume :
523
Issue :
3
Database :
Academic Search Index
Journal :
Biochemical & Biophysical Research Communications
Publication Type :
Academic Journal
Accession number :
141730687
Full Text :
https://doi.org/10.1016/j.bbrc.2019.12.094