Department of Chemistry and Biochemistry, University of California, Santa Cruz, California 95064, United States.
Department of Chemistry, University of Washington, Seattle, Washington 98195, United States.
ACS Chem Biol. 2023 Feb 17;18(2):431-440. doi: 10.1021/acschembio.3c00015. Epub 2023 Feb 1.
Cyclin-dependent kinases (CDKs) are key mediators of cell proliferation and have been a subject of oncology drug discovery efforts for over two decades. Several CDK and activator cyclin family members have been implicated in regulating the cell division cycle. While it is thought that there are canonical CDK-cyclin pairing preferences, the extent of selectivity is unclear, and increasing evidence suggests that the cell-cycle CDKs can be activated by a pool of available cyclins. The molecular details of CDK-cyclin specificity are not completely understood despite their importance for understanding cancer cell cycles and for pharmacological inhibition of cancer proliferation. We report here a biolayer interferometry assay that allows for facile quantification of CDK binding interactions with their cyclin activators. We applied this assay to measure the impact of Cdk2 inhibitors on Cyclin A (CycA) association and dissociation kinetics. We found that Type I inhibitors increase the affinity between Cdk2 and CycA by virtue of a slowed cyclin dissociation rate. In contrast, Type II inhibitors and other small-molecule Cdk2 binders have distinct effects on the CycA association and dissociation processes to decrease affinity. We propose that the differential impact of small molecules on the cyclin binding kinetics arises from the plasticity of the Cdk2 active site as the kinase transitions between active, intermediate, and inactive states.
细胞周期蛋白依赖性激酶(CDKs)是细胞增殖的关键调节剂,也是肿瘤药物研发努力的主题已有二十多年。有几个 CDK 和激活 cyclin 家族成员被认为参与调节细胞分裂周期。虽然人们认为存在规范的 CDK-cyclin 配对偏好,但选择性的程度尚不清楚,越来越多的证据表明细胞周期 CDKs 可以被可用的 cyclin 池激活。尽管它们对于理解癌细胞周期和药理学抑制癌细胞增殖非常重要,但 CDK-cyclin 特异性的分子细节还不完全清楚。我们在这里报告了一种生物层干涉测量法(Biolayer interferometry assay),该方法可以轻松定量 CDK 与其 cyclin 激活剂的结合相互作用。我们应用该测定法来测量 Cdk2 抑制剂对 Cyclin A(CycA)结合和解离动力学的影响。我们发现,I 型抑制剂通过减慢 cyclin 解离速率,增加 Cdk2 与 CycA 之间的亲和力。相比之下,II 型抑制剂和其他小分子 Cdk2 结合物对 CycA 的结合和解离过程具有不同的影响,从而降低了亲和力。我们提出,小分子对 cyclin 结合动力学的不同影响源于激酶在活性、中间和非活性状态之间转换时,Cdk2 活性位点的可塑性。