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Structure-based design of novel 2-amino-6-phenyl-pyrimido[5',4':5,6]pyrimido[1,2-a]benzimidazol-5(6H)-ones as potent and orally active inhibitors of lymphocyte specific kinase (Lck): synthesis, SAR, and in vivo anti-inflammatory activity

Authors :
David Powers
Huilin Zhao
Li Zhu
Lilly Chai
Theodore Faust
Yan Gu
Yanyan Tudor
Anu Gore
Joseph L. Kim
Xiaotian Zhu
Antonio J. Oliveira-dos-Santos
Xin Huang
Monika Ermann
Susan M. Turci
Paul E. Rose
Debra Zack
Christina Boucher
Linda F. Epstein
Faye Hsieh
John Newcomb
Chiara Ghiron
Andrew A. Welcher
Sylvia Flores
Matthew W. Martin
Paul Gallant
Vinod F. Patel
Kurt Morgenstern
Scot Middleton
Carl-Gustaf Pierre Saluste
David N. Johnston
Joseph J. Nunes
Source :
Journal of medicinal chemistry. 51(6)
Publication Year :
2008

Abstract

Lck, or lymphocyte specific kinase, is a cytoplasmic tyrosine kinase of the Src family expressed in T-cells and NK cells. Genetic evidence from knockout mice and human mutations demonstrates that Lck kinase activity is critical for T-cell receptor-mediated signaling, leading to normal T-cell development and activation. A small molecule inhibitor of Lck is expected to be useful in the treatment of T-cell-mediated autoimmune and inflammatory disorders and/or organ transplant rejection. In this paper, we describe the structure-guided design, synthesis, structure-activity relationships, and pharmacological characterization of 2-amino-6-phenylpyrimido[5',4':5,6]pyrimido[1,2- a]benzimidazol-5(6 H)-ones, a new class of compounds that are potent inhibitors of Lck. The most promising compound of this series, 6-(2,6-dimethylphenyl)-2-((4-(4-methyl-1-piperazinyl)phenyl)amino)pyrimido[5',4':5,6]pyrimido-[1,2- a]benzimidazol-5(6 H)-one ( 25), exhibits potent inhibition of Lck kinase activity. This activity translates into inhibition of in vitro cell-based assays and in vivo models of T-cell activation and arthritis, respectively.

Details

ISSN :
00222623
Volume :
51
Issue :
6
Database :
OpenAIRE
Journal :
Journal of medicinal chemistry
Accession number :
edsair.doi.dedup.....103997a37146d598b2c8c9f6d48f19d9