| Literature DB >> 29170712 |
Moses Moustakim1,2,3, Peter G K Clark4, Duncan A Hay5, Darren J Dixon1, Paul E Brennan2,3.
Abstract
In the last five years, the development of inhibitors of bromodomains has emerged as an area of intensive worldwide research. Emerging evidence has implicated a number of non-Entities:
Year: 2016 PMID: 29170712 PMCID: PMC5644722 DOI: 10.1039/c6md00373g
Source DB: PubMed Journal: Medchemcomm ISSN: 2040-2503 Impact factor: 3.597
Fig. 1Bromodomains with reported inhibitors. A. Brd inhibitors such as LP99 (pale ball and stick) bind in the acetyl lysine binding pocket (green ribbon) to a common Asn residue (green ball and stick) and a network of water molecules (blue CPK) (LP99 and BRD9 from PDB ID 5IGN). B. Distribution of acetyl lysine binding residues in Brd pockets. Brds are colored by their acetyl lysine binding residue (red: Asn, blue: Tyr, green: Thr, purple: Asp). All reported Brd inhibitors (grey sections of bars) target Brds with a typical Asn residue with the exception of PHIP(2) which has a Thr. C. Brds in grey boxes have reported inhibitors. Brds in colored typeface have no reported inhibitors (colors as in B).
Fig. 2PCAF bromodomain inhibitors.
Fig. 3CECR2/BPTF inhibitors.
Fig. 4Early CBP inhibitors from the Zhou group.
Fig. 5Dihydroquinoxalinone CBP inhibitors.
Fig. 6Isoxazole and related CBP/p300 inhibitors.
Fig. 7CBP/p300 chemical probe I-CBP112.
Fig. 8CBP inhibitors from Nevado and Caflisch.
Fig. 9Optimized CBP inhibitor from Nevado and Caflisch.
Fig. 10CBP/p300 inhibitors from Constellation and Genentech.
Fig. 11PHIP(2) fragment hits.
Fig. 12BRD7 and BRD9 inhibitors.
Fig. 13BRPF1B inhibitors.
Fig. 14ATAD2 inhibitors.
Fig. 15BAZ2A/BAZ2B inhibitors.
Fig. 16Dual TRIM24/BRPF1 inhibitors.
Fig. 17TAF1(2) inhibitor compound 40 sub-family VIII.
Fig. 18PB1/SMARCA2/SMARCA4 inhibitors.