Fragment-Based Discovery of Bromodomain Inhibitors Part 1: Inhibitor Binding Modes and Implications for Lead Discovery

被引:148
作者
Chung, Chun-wa [1 ]
Dean, Anthony W. [1 ]
Woolven, James M. [1 ]
Bamborough, Paul [1 ]
机构
[1] GlaxoSmithKline R&D, Computat & Struct Chem, Mol Discovery Res, Med Res Ctr, Stevenage SG1 2NY, Herts, England
关键词
HISTONE H4 RECOGNITION; HUMAN BRD2 BROMODOMAIN; CHROMATIN MODIFICATIONS; DRUG DISCOVERY; ASSOCIATION; PARACETAMOL; PROTEINS; LEUKEMIA; LIGANDS; LESSONS;
D O I
10.1021/jm201320w
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Bromodomain-containing proteins are key epigenetic regulators of gene transcription and readers of the histone code. However, the therapeutic benefits of modulating this target class are largely unexplored due to the lack of suitable chemical probes. This article describes the generation of lead molecules for the BET bromodomains through screening a fragment set chosen using structural insights and computational approaches. Analysis of 40 BRD2/fragment X-ray complexes highlights both shared and disparate interaction features that may be exploited for affinity and selectivity. Six representative crystal structures are then exemplified in detail. Two of the fragments are completely new bromodomain chemotypes, and three have never before been crystallized in a bromodomain, so our results significantly extend the limited public knowledge-base of crystallographic small molecule/bromodomain interactions. Certain fragments (including paracetamol) bind in a consistent mode to different bromodomains such as CREBBP, suggesting their potential to act as generic bromodomain templates. An important implication is that the bromodomains are not only a phylogenetic family but also a system in which chemical and structural knowledge of one bromodomain gives insights transferrable to others.
引用
收藏
页码:576 / 586
页数:11
相关论文
共 43 条
  • [31] Target structure-based discovery of small molecules that block human p53 and CREB binding protein association
    Sachchidanand
    Resnick-Silverman, L
    Yan, S
    Mutjaba, S
    Liu, WJ
    Zeng, L
    Manfredi, JJ
    Zhou, MM
    [J]. CHEMISTRY & BIOLOGY, 2006, 13 (01): : 81 - 90
  • [32] Sanchez R, 2009, CURR OPIN DRUG DISC, V12, P659
  • [33] Recent progress in fragment-based lead discovery
    Schulz, Michele N.
    Hubbard, Roderick E.
    [J]. CURRENT OPINION IN PHARMACOLOGY, 2009, 9 (05) : 615 - 621
  • [34] How were new medicines discovered?
    Swinney, David C.
    Anthony, Jason
    [J]. NATURE REVIEWS DRUG DISCOVERY, 2011, 10 (07) : 507 - 519
  • [35] Acetaminophen-induced differentiation of human breast cancer stem cells and inhibition of tumor xenograft growth in mice
    Takehara, Masaya
    Hoshino, Tatsuya
    Namba, Takushi
    Yamakawa, Naoki
    Mizushima, Tohru
    [J]. BIOCHEMICAL PHARMACOLOGY, 2011, 81 (09) : 1124 - 1135
  • [36] How chromatin-binding modules interpret histone modifications: lessons from professional pocket pickers
    Taverna, Sean D.
    Li, Haitao
    Ruthenburg, Alexander J.
    Allis, C. David
    Patel, Dinshaw J.
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2007, 14 (11) : 1025 - 1040
  • [37] What do we (not) know about how paracetamol (acetaminophen) works?
    Toussaint, K.
    Yang, X. C.
    Zielinski, M. A.
    Reigle, K. L.
    Sacavage, S. D.
    Nagar, S.
    Raffa, R. B.
    [J]. JOURNAL OF CLINICAL PHARMACY AND THERAPEUTICS, 2010, 35 (06) : 617 - 638
  • [38] Structural implications for K5/K12-di-acetylated histone H4 recognition by the second bromodomain of BRD2
    Umehara, Takashi
    Nakamura, Yoshihiro
    Wakamori, Masatoshi
    Ozato, Keiko
    Yokoyama, Shigeyuki
    Padmanabhan, Balasundaram
    [J]. FEBS LETTERS, 2010, 584 (18) : 3901 - 3908
  • [39] Structural Basis for Acetylated Histone H4 Recognition by the Human BRD2 Bromodomain
    Umehara, Takashi
    Nakamura, Yoshihiro
    Jang, Moon Kyoo
    Nakano, Kazumi
    Tanaka, Akiko
    Ozato, Keiko
    Padmanabhan, Balasundaram
    Yokoyama, Shigeyuki
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (10) : 7610 - 7618
  • [40] Dynamic changes in histone acetylation regulate origins of DNA replication
    Unnikrishnan, Ashwin
    Gafken, Philip R.
    Tsukiyama, Toshio
    [J]. NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2010, 17 (04) : 430 - U68