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PMID: 26077136 Published · epublish English

Anchor-based classification and type-C inhibitors for tyrosine kinases.

Scientific reports ·Vol. 5 ·2016-05-13

Hsu Kai-Cheng, Sung Tzu-Ying, Lin Chih-Ta, Chiu Yi-Yuan, Hsu John T-A, Hung Hui-Chen, Sun Chung-Ming, Barve Indrajeet, Chen Wen-Liang, Huang Wen-Chien, Huang Chin-Ting, Chen Chun-Hwa, Yang Jinn-Moon

Abstract

Tyrosine kinases regulate various biological processes and are drug targets for cancers. At present, the design of selective and anti-resistant inhibitors of kinases is an emergent task. Here, we inferred specific site-moiety maps containing two specific anchors to uncover a new binding pocket in the C-terminal hinge region by docking 4,680 kinase inhibitors into 51 protein kinases, and this finding provides an opportunity for the development of kinase inhibitors with high selectivity and anti-drug resistance. We present an anchor-based classification for tyrosine kinases and discover two type-C inhibitors, namely rosmarinic acid (RA) and EGCG, which occupy two and one specific anchors, respectively, by screening 118,759 natural compounds. Our profiling reveals that RA and EGCG selectively inhibit 3% (EGFR and SYK) and 14% of 64 kinases, respectively. According to the guide of our anchor model, we synthesized three RA derivatives with better potency. These type-C inhibitors are able to maintain activities for drug-resistant EGFR and decrease the invasion ability of breast cancer cells. Our results show that the type-C inhibitors occupying a new pocket are promising for cancer treatments due to their kinase selectivity and anti-drug resistance.

Article Info
Journal
Scientific reports
Abbr.
Sci Rep
Published
2016-05-13
Indexed
2015-06-16
Updated
2016-11-25
Language
English
Country/Region
England
NLM ID
101563288
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