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Crystal structure of a human cyclin-dependent kinase 6 complex with a flavonol inhibitor, fisetin

机译:人类细胞周期蛋白依赖性激酶6与黄酮醇抑制剂非瑟定的复合物的晶体结构

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Cyclin-dependent kinases (CDKs) play a central role in cell cycle control, apoptosis, transcription, and neuronal functions. They are important targets for the design of drugs with antimitotic or antineurodegenerative effects. CDK4 and CDK6 form a subfamily among the CDKs in mammalian cells, as defined by sequence similarities. Compared to CDK2 and CDK5, structural information on CDK4 and CDK6 is sparse. We describe here the crystal structure of human CDK6 in complex with a viral cyclin and a flavonol inhibitor, fisetin. Fisetin binds to the active form of CDK6, forming hydrogen bonds with the side chains of residues in the binding pocket that undergo large conformational changes during CDK activation by cyclin binding. The 4-keto group and the 3-hydroxyl group of fisetin are hydrogen bonded with the backbone in the hinge region between the N-terminal and C-terminal kinase domain, as has been observed for many CDK inhibitors. However, CDK2 and HCK kinase in complex with other flavone inhibitors such as quercetin and flavopiridol showed a different binding mode with the inhibitor rotated by about 180degrees. The structural information of the CDK6-fisetin complex is correlated with the binding affinities of different flavone inhibitors for CDK6. This complex structure is the first description of an inhibitor complex with a kinase from the CDK4/6 subfamily and can provide a basis for selecting and designing inhibitor compounds with higher affinities and specificities.
机译:细胞周期蛋白依赖性激酶(CDK)在细胞周期控制,细胞凋亡,转录和神经元功能中起着核心作用。它们是设计具有抗有丝分裂或抗神经变性作用的药物的重要目标。如序列相似性所定义,CDK4和CDK6在哺乳动物细胞的CDK中形成一个亚科。与CDK2和CDK5相比,CDK4和CDK6的结构信息很少。我们在这里描述了人CDK6与病毒细胞周期蛋白和黄酮醇抑制剂非瑟汀复合的晶体结构。 Fisetin与CDK6的活性形式结合,与结合口袋中残基的侧链形成氢键,这些残基在通过cyclin结合进行CDK激活期间经历大的构象变化。正如许多CDK抑制剂所观察到的那样,非瑟汀的4-酮基和3-羟基与骨架在N端和C端激酶结构域之间的铰链区氢键合。但是,CDK2和HCK激酶与其他黄酮抑制剂(例如槲皮素和黄酮哌啶醇)复合时,抑制剂旋转了约180度,显示出不同的结合模式。 CDK6-fisetin复合物的结构信息与不同的黄酮抑制剂对CDK6的结合亲和力相关。这种复合物结构是对抑制剂与CDK4 / 6亚家族激酶的复合物的首次描述,可为选择和设计具有更高亲和力和特异性的抑制剂化合物提供基础。

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