| Literature DB >> 25043312 |
Radoslaw Laufer1, Grace Ng2, Yong Liu2, Narendra Kumar B Patel2, Louise G Edwards2, Yunhui Lang2, Sze-Wan Li2, Miklos Feher2, Don E Awrey2, Genie Leung2, Irina Beletskaya2, Olga Plotnikova2, Jacqueline M Mason2, Richard Hodgson2, Xin Wei2, Guodong Mao2, Xunyi Luo2, Ping Huang2, Erin Green2, Reza Kiarash3, Dan Chi-Chia Lin2, Marees Harris-Brandts2, Fuqiang Ban2, Vincent Nadeem2, Tak W Mak2, Guohua J Pan2, Wei Qiu4, Nickolay Y Chirgadze4, Henry W Pauls5.
Abstract
TTK kinase was identified by in-house siRNA screen and pursued as a tractable, novel target for cancer treatment. A screening campaign and systematic optimization, supported by computer modeling led to an indazole core with key sulfamoylphenyl and acetamido moieties at positions 3 and 5, respectively, establishing a novel chemical class culminating in identification of 72 (CFI-400936). This potent inhibitor of TTK (IC50=3.6nM) demonstrated good activity in cell based assay and selectivity against a panel of human kinases. A co-complex TTK X-ray crystal structure and results of a xenograft study with TTK inhibitors from this class are described.Entities:
Keywords: Anticancer; Indazolyl benzenesulfonamide; Mitotic kinase; Monopolar Spindle 1 kinase (Mps1); Tyrosine Threonine Kinase (TTK); antimitotic agents
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Year: 2014 PMID: 25043312 DOI: 10.1016/j.bmc.2014.06.027
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641