4.7 Article

Protein Lysine Methyltransferase G9a Inhibitors: Design, Synthesis, and Structure Activity Relationships of 2,4-Diamino-7-aminoalkoxy-quinazolines.

Journal

JOURNAL OF MEDICINAL CHEMISTRY
Volume 53, Issue 15, Pages 5844-5857

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jm100478y

Keywords

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Funding

  1. National Institute Of General Medical Sciences of NIH [RC1GM090732]
  2. Carolina Partnership
  3. NIH
  4. NHGRI of NIH
  5. Ontario Research Fund
  6. Canadian Institutes for Health Research [1097737]
  7. Canada Foundation for Innovation
  8. Genome Canada, Ontario Genomics Institute
  9. GlaxoSmithKline
  10. Karolinska Institutet
  11. Knut and Alice Wallenberg Foundation
  12. Ontario Innovation Trust
  13. Ontario Ministry for Research and Innovation
  14. Merck Co., Inc.
  15. Novartis Research Foundation
  16. Swedish Agency for Innovation Systems
  17. Swedish Foundation for Strategic Research
  18. Wellcome Trust

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Protein lysine methyltransferase G9a, which catalyzes methylation of lysine 9 of histone H3 (H3K9) and lysine 373 (K373) of p53, is overexpressed in human cancers. Genetic knockdown of G9a inhibits cancer cell growth, and the dimethylation of p53 K373 results in the inactivation of p53. Initial SAR exploration of the 2,4-diamino-6,7-dimethoxyquinazoline template represented by 3a (BIX01294), a selective small molecule inhibitor of G9a and GLP, led to the discovery of 10 (UNC0224) as a potent G9a inhibitor with excellent selectivity. A high resolution X-ray crystal structure of the G9a-10 complex, the first cocrystal structure of G9a with a small molecule inhibitor, was obtained. On the basis of the structural insights revealed by this cocrystal structure, optimization of the 7-dimethylaminopropoxy side chain of 10 resulted in the discovery of 29 (UNC0321) (Morrison K(i) = 63 pM), which is the first G9a inhibitor with picomolar potency and the most potent G9a inhibitor to date.

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