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Discovery and Characterization of GSK2801, a Selective Chemical Probe for the Bromodomains BAZ2A and BAZ2B
Author(s) -
Peiling Chen,
A. Chaikuad,
Paul Bamborough,
Marcus Bantscheff,
C. Bountra,
Chun-wa Chung,
Oleg Fedorov,
Paola Grandi,
David Jung,
Robert K. Leśniak,
Matthew Lindon,
Susanne Müller,
Martin Philpott,
Rab K. Prinjha,
Catherine Rogers,
Carolyn Selenski,
C. Tallant,
Thilo Werner,
Timothy M. Willson,
Stefan Knapp,
David H. Drewry
Publication year - 2015
Publication title -
journal of medicinal chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.01
H-Index - 261
eISSN - 1520-4804
pISSN - 0022-2623
DOI - 10.1021/acs.jmedchem.5b00209
Subject(s) - bromodomain , chemistry , druggability , chromatin , in vivo , acetylation , lysine , biochemistry , brd4 , microbiology and biotechnology , transcription factor , computational biology , biology , gene , amino acid , genetics
Bromodomains are acetyl-lysine specific protein interaction domains that have recently emerged as a new target class for the development of inhibitors that modulate gene transcription. The two closely related bromodomain containing proteins BAZ2A and BAZ2B constitute the central scaffolding protein of the nucleolar remodeling complex (NoRC) that regulates the expression of noncoding RNAs. However, BAZ2 bromodomains have low predicted druggability and so far no selective inhibitors have been published. Here we report the development of GSK2801, a potent, selective and cell active acetyl-lysine competitive inhibitor of BAZ2A and BAZ2B bromodomains as well as the inactive control compound GSK8573. GSK2801 binds to BAZ2 bromodomains with dissociation constants (KD) of 136 and 257 nM for BAZ2B and BAZ2A, respectively. Crystal structures demonstrated a canonical acetyl-lysine competitive binding mode. Cellular activity was demonstrated using fluorescent recovery after photobleaching (FRAP) monitoring displacement of GFP-BAZ2A from acetylated chromatin. A pharmacokinetic study in mice showed that GSK2801 had reasonable in vivo exposure after oral dosing, with modest clearance and reasonable plasma stability. Thus, GSK2801 represents a versatile tool compound for cellular and in vivo studies to understand the role of BAZ2 bromodomains in chromatin biology.

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