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Interactome Rewiring Following Pharmacological Targeting of BET Bromodomains

Authors :
Lambert, Jean-Philippe
Picaud, Sarah
Fujisawa, Takao
Hou, Huayun
Savitsky, Pavel
Uusküla-Reimand, Liis
Gupta, Gagan D
Abdouni, Hala
Lin, Zhen-Yuan
Tucholska, Monika
Knight, James D R
Gonzalez-Badillo, Beatriz
St-Denis, Nicole
Newman, Joseph A
Stucki, Manuel
Pelletier, Laurence
Bandeira, Nuno
Wilson, Michael D
Filippakopoulos, Panagis
Gingras, Anne-Claude
Lambert, Jean-Philippe
Picaud, Sarah
Fujisawa, Takao
Hou, Huayun
Savitsky, Pavel
Uusküla-Reimand, Liis
Gupta, Gagan D
Abdouni, Hala
Lin, Zhen-Yuan
Tucholska, Monika
Knight, James D R
Gonzalez-Badillo, Beatriz
St-Denis, Nicole
Newman, Joseph A
Stucki, Manuel
Pelletier, Laurence
Bandeira, Nuno
Wilson, Michael D
Filippakopoulos, Panagis
Gingras, Anne-Claude
Source :
Lambert, Jean-Philippe; Picaud, Sarah; Fujisawa, Takao; Hou, Huayun; Savitsky, Pavel; Uusküla-Reimand, Liis; Gupta, Gagan D; Abdouni, Hala; Lin, Zhen-Yuan; Tucholska, Monika; Knight, James D R; Gonzalez-Badillo, Beatriz; St-Denis, Nicole; Newman, Joseph A; Stucki, Manuel; Pelletier, Laurence; Bandeira, Nuno; Wilson, Michael D; Filippakopoulos, Panagis; Gingras, Anne-Claude (2019). Interactome Rewiring Following Pharmacological Targeting of BET Bromodomains. Molecular Cell, 73(3):621-638.e17.
Publication Year :
2019

Abstract

Targeting bromodomains (BRDs) of the bromo-and-extra-terminal (BET) family offers opportunities for therapeutic intervention in cancer and other diseases. Here, we profile the interactomes of BRD2, BRD3, BRD4, and BRDT following treatment with the pan-BET BRD inhibitor JQ1, revealing broad rewiring of the interaction landscape, with three distinct classes of behavior for the 603 unique interactors identified. A group of proteins associate in a JQ1-sensitive manner with BET BRDs through canonical and new binding modes, while two classes of extra-terminal (ET)-domain binding motifs mediate acetylation-independent interactions. Last, we identify an unexpected increase in several interactions following JQ1 treatment that define negative functions for BRD3 in the regulation of rRNA synthesis and potentially RNAPII-dependent gene expression that result in decreased cell proliferation. Together, our data highlight the contributions of BET protein modules to their interactomes allowing for a better understanding of pharmacological rewiring in response to JQ1.

Details

Database :
OAIster
Journal :
Lambert, Jean-Philippe; Picaud, Sarah; Fujisawa, Takao; Hou, Huayun; Savitsky, Pavel; Uusküla-Reimand, Liis; Gupta, Gagan D; Abdouni, Hala; Lin, Zhen-Yuan; Tucholska, Monika; Knight, James D R; Gonzalez-Badillo, Beatriz; St-Denis, Nicole; Newman, Joseph A; Stucki, Manuel; Pelletier, Laurence; Bandeira, Nuno; Wilson, Michael D; Filippakopoulos, Panagis; Gingras, Anne-Claude (2019). Interactome Rewiring Following Pharmacological Targeting of BET Bromodomains. Molecular Cell, 73(3):621-638.e17.
Notes :
application/pdf, application/pdf, https://www.zora.uzh.ch/id/eprint/160765/1/BET_Resource_MolCel_revised_v8.pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1416170594
Document Type :
Electronic Resource