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ATP-competitive, marine derived natural products that target the DEAD box helicase, eIF4A.


ABSTRACT: Activation of translation initiation is a common trait of cancer cells. Formation of the heterotrimeric eukaryotic initiation factor F (eIF4F) complex is the rate-limiting step in 5' m7GpppN cap-dependent translation. This trimeric complex includes the eIF4E cap binding protein, the eIF4G scaffolding protein, and the DEAD box RNA helicase eIF4A. eIF4A is an ATP-dependent helicase and because it is the only enzyme in the eIF4F complex, it has been shown to be a potential therapeutic target for a variety of malignancies. To this end, we have used a simple ATPase biochemical screen to survey several hundred marine and terrestrial derived natural products. Herein, we report the discovery of two natural products from marine sources, elisabatin A (1) and allolaurinterol (2), which show low µM inhibition of eIF4A ATPase activity. Enzymological analyses revealed 1 and 2 to be ATP-competitive, and cellular evaluations showed reasonable cytotoxicity against A549 (lung cancer) and MDA-MA-468 (breast cancer) cell lines. However, only compound 2 showed potent inhibition of helicase activity congruent with its ATPase inhibitory activity.

SUBMITTER: Tillotson J 

PROVIDER: S-EPMC5593424 | biostudies-literature | 2017 Sep

REPOSITORIES: biostudies-literature

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ATP-competitive, marine derived natural products that target the DEAD box helicase, eIF4A.

Tillotson Joseph J   Kedzior Magdalena M   Guimarães Larissa L   Ross Alison B AB   Peters Tara L TL   Ambrose Andrew J AJ   Schmidlin Cody J CJ   Zhang Donna D DD   Costa-Lotufo Letícia V LV   Rodríguez Abimael D AD   Schatz Jonathan H JH   Chapman Eli E  

Bioorganic & medicinal chemistry letters 20170719 17


Activation of translation initiation is a common trait of cancer cells. Formation of the heterotrimeric eukaryotic initiation factor F (eIF4F) complex is the rate-limiting step in 5' m7GpppN cap-dependent translation. This trimeric complex includes the eIF4E cap binding protein, the eIF4G scaffolding protein, and the DEAD box RNA helicase eIF4A. eIF4A is an ATP-dependent helicase and because it is the only enzyme in the eIF4F complex, it has been shown to be a potential therapeutic target for a  ...[more]

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