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The structural basis of Indisulam-mediated recruitment of RBM39 to the DCAF15-DDB1-DDA1 E3 ligase complex

Authors :
Junping Zhao
Songchun Jiang
Lili Xie
Celine Be
Dan King
Andreas O. Frank
Aleem Fazal
Ashley Burke
Rohan Eric John Beckwith
Mark Knapp
Fangmin Xu
Alexandra Frommlet
Rajeshri Ganesh Karki
Joshiawa Paulk
Hans Voshol
Adarsh Godbole
Jonathan M Solomon
Jennifer Cobb
Dirksen E. Bussiere
Nathalie Carte
Wei Shu
Viktor Hornak
Barun Okram
Patrick Graff
Christian Wiesmann
Pierre-Yves Michellys
Honnappa Srinivas
Publication Year :
2019
Publisher :
Cold Spring Harbor Laboratory, 2019.

Abstract

The anti-cancer agent Indisulam inhibits cell proliferation by causing degradation of RBM39, an essential mRNA splicing factor. Indisulam promotes an interaction between RBM39 and the DCAF15 E3 ligase substrate receptor leading to RBM39 ubiquitination and proteasome-mediated degradation. To delineate the precise mechanism by which Indisulam mediates DCAF15-RBM39 interaction, we solved the DCAF15-DDB1-DDA1-Indisulam-RBM39(RRM2) complex structure to 2.3 Å. DCAF15 has a novel topology which embraces the RBM39(RRM2) domain largely via nonpolar interactions, and Indisulam binds between DCAF15 and RBM39(RRM2) and coordinates additional interactions between the two proteins. Studies with RBM39 point mutants and Indisulam analogs validated the structural model and defined the RBM39 alpha-helical degron motif. The degron is found only in RBM23 and RBM39 and only these proteins were detectably downregulated in Indisulam-treated HCT116 cells. This work further explains how Indisulam induces RBM39 degradation and defines the challenge of harnessing DCAF15 to degrade novel targets.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....e6e9659c4fdd93ab18b888713419aecb
Full Text :
https://doi.org/10.1101/737510