Kristjánsdóttir Kolbrún, Rudolph Johannes
Department of Biochemistry, Duke University Medical Center, Durham, NC 27710, USA.
Anal Biochem. 2003 May 1;316(1):41-9. doi: 10.1016/s0003-2697(03)00033-2.
Protein phosphorylation is the mediator of many important cellular processes of signal transduction and cell regulation. Phosphorylation often occurs on multiple sites within a single protein, whereby the results of individual phosphorylations are not well defined. This is partially due to the lack of tools for analyzing specific phosphorylation states in a quantitative manner. We have developed a high-throughput, rapid, and quantitative method for the determination of the phosphorylation status of peptides and, more importantly, native protein substrates of kinases using a competitive fluorescence-based approach. We have applied our method to measuring the phosphorylation activity of the Wee1 and Myt1 kinases. Our technique allows one to monitor the bis-phosphorylation status of the Cdk2 protein using an antibody specific for bis-phosphorylated Cdk2 and a fluorescently labeled bis-phosphorylated Cdk2 peptide. We have used this assay to screen a library of 16 general kinase inhibitors against Wee1 and Myt1 activity. None of the inhibitors inhibited Wee1, but both staurosporine and K-252a inhibited Myt1, with IC(50) values of 9.2+/-3.6 and 4.0+/-1.3 microM, respectively.
蛋白质磷酸化是信号转导和细胞调控等许多重要细胞过程的介导因素。磷酸化通常发生在单个蛋白质的多个位点上,然而各个磷酸化的结果并不明确。部分原因是缺乏以定量方式分析特定磷酸化状态的工具。我们开发了一种高通量、快速且定量的方法,用于测定肽段以及更重要的是激酶的天然蛋白质底物的磷酸化状态,该方法采用基于竞争荧光的方法。我们已将我们的方法应用于测量Wee1和Myt1激酶的磷酸化活性。我们的技术能够使用针对双磷酸化Cdk2的特异性抗体和荧光标记的双磷酸化Cdk2肽段来监测Cdk2蛋白的双磷酸化状态。我们已使用该检测方法筛选了一个包含16种通用激酶抑制剂的文库,以检测其对Wee1和Myt1活性的影响。没有一种抑制剂能抑制Wee1,但星形孢菌素和K - 252a均能抑制Myt1,其IC(50)值分别为9.2±3.6和4.0±1.3微摩尔。