首页> 外文期刊>Bioorganic and Medicinal Chemistry Letters >Synthesis and structure-activity relationship of 3,4'-bispyridinylethylenes: discovery of a potent 3-isoquinolinylpyridine inhibitor of protein kinase B (PKB/Akt) for the treatment of cancer.
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Synthesis and structure-activity relationship of 3,4'-bispyridinylethylenes: discovery of a potent 3-isoquinolinylpyridine inhibitor of protein kinase B (PKB/Akt) for the treatment of cancer.

机译:3,4'-联吡啶基乙烯的合成与构效关系:发现一种有效的蛋白激酶B 3-异喹啉基吡啶抑制剂(PKB / Akt),用于治疗癌症。

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摘要

Structure-based design and synthesis of the 3,4'-bispyridinylethylene series led to the discovery of 3-isoquinolinylpyridine 13a as a potent PKB/Akt inhibitor with an IC(50) of 1.3nM against Akt1. Compound 13a shows excellent selectivity against distinct families of kinases such as tyrosine kinases and CAMK, and displays poor to marginal selectivity against closely related kinases in the AGC and CMGC families. Moreover, 13a demonstrates potent cellular activity comparable to staurosporine, with IC(50) values of 0.42 and 0.59microM against MiaPaCa-2 and the Akt1 overexpressing FL5.12-Akt1, respectively. Inhibition of phosphorylation of the Akt downstream target GSK3 was also observed in FL5.12-Akt1 cells with an EC(50) of 1.5microM. The X-ray structures of 12 and 13a in complex with PKA in the ATP-binding site were determined.
机译:3,4'-双吡啶基乙烯系列的基于结构的设计和合成导致发现3-异喹啉基吡啶13a作为有效的PKB / Akt抑制剂,对Akt1的IC(50)为1.3nM。化合物13a对不同的激酶家族(例如酪氨酸激酶和CAMK)表现出极好的选择性,对AGC和CMGC家族中密切相关的激酶的选择性差至边缘选择性。此外,13a表现出与星形孢菌素相当的有效细胞活性,针对MiaPaCa-2和过表达FL5.12-Akt1的Akt1的IC(50)值为0.42和0.59microM。还观察到FL5.12-Akt1细胞中EC(50)为1.5microM的Akt下游目标GSK3磷酸化的抑制作用。确定了在ATP结合位点与PKA复合的12和13a的X射线结构。

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