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首页> 外文期刊>Journal of Medicinal Chemistry >Chemically Diverse Group I p21-Activated Kinase (PAK) Inhibitors Impart Acute Cardiovascular Toxicity with a Narrow Therapeutic Window
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Chemically Diverse Group I p21-Activated Kinase (PAK) Inhibitors Impart Acute Cardiovascular Toxicity with a Narrow Therapeutic Window

机译:化学多样性的第I组p21活化激酶(PAK)抑制剂通过狭窄的治疗窗可增强急性心血管毒性。

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p21-activated kinase 1 (PAK1) has an important role in transducing signals in several oncogenic pathways. The concept of inhibiting this kinase has garnered significant interest over the past decade, particularly for targeting cancers associated with PAK1 amplification. Animal studies with the selective group I PAK (pan-PAK1, 2, 3) inhibitor G-5555 from the pyrido [2,3-d]pyrimidin-7-one class uncovered acute toxicity with a narrow therapeutic window. To attempt mitigating the toxicity, we introduced significant structural changes, culminating in the discovery of the potent pyridone side chain analogue G-9791. Mouse tolerability studies with this compound, other members of this series, and compounds from two structurally distinct classes revealed persistent toxicity and a correlation of minimum toxic concentrations and PAK1/2 mediated cellular potencies. Broad screening of selected PAK inhibitors revealed PAK1, 2, and 3 as the only overlapping targets. Our data suggest acute cardiovascular toxicity resulting from the inhibition of PAK2, which may be enhanced by PAK1 inhibition, and cautions against continued pursuit of pan-group I PAK inhibitors in drug discovery.
机译:p21激活的激酶1(PAK1)在几种致癌途径中的信号转导中具有重要作用。在过去的十年中,抑制这种激酶的概念引起了广泛的兴趣,特别是针对与PAK1扩增相关的癌症。使用来自吡啶基[2,3-d]嘧啶7-7一类的选择性I组PAK(pan-PAK1、2、3)抑制剂G-5555进行的动物研究发现,急性毒性具有狭窄的治疗范围。为了尝试减轻毒性,我们引入了重大的结构变化,最终发现了有效的吡啶酮侧链类似物G-9791。对该化合物,该系列其他成员以及两种结构不同的化合物的小鼠耐受性研究表明,该化合物具有持续毒性,且最低毒性浓度与PAK1 / 2介导的细胞效能有关。广泛筛选所选的PAK抑制剂显示PAK1、2和3是唯一重叠的靶标。我们的数据表明,PAK2的抑制可能会导致急性心血管毒性,PAK1的抑制可能会增强PAK2的抑制作用,并警告不要在药物发现中继续使用泛I PAK抑制剂。

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