Department of Chemistry, University of California, Riverside, California 92521-0403, United States.
Anal Chem. 2013 Aug 6;85(15):7478-86. doi: 10.1021/ac401415z. Epub 2013 Jul 22.
ATP-binding proteins play significant roles in numerous cellular processes. Here, we introduced a novel isotope-coded ATP-affinity probe (ICAP) as an acylating agent to simultaneously enrich and incorporate isotope label to ATP-binding proteins. By taking advantage of the quantitative capability of this isotope-coded probe, we devised an affinity profiling strategy to comprehensively characterize ATP-protein interactions at the entire proteome scale. False-positive identification of ATP-binding sites derived from nonspecific labeling was effectively minimized through the comparison of the labeling behaviors of lysine residues with the use of low and high concentrations of the ICAP reagents. A total of 258 previously known ATP-binding proteins from lysates of HeLa-S3 and Jurkat-T cells were validated with this affinity profiling assay. Additionally, we demonstrated that this novel quantitative ATP-affinity profiling strategy is particularly useful for unveiling previously unrecognized nucleotide-binding sites in ATP-binding proteins. For example, our profiling results revealed K356 as a new ATP-binding site in HSP90. Furthermore, 293 proteins without documented ATP-binding GO were predicted to be ATP-binding proteins on the basis of our quantitative affinity profiling results. We also uncovered, for the first time, the ATP-binding capability of human proliferating cell nuclear antigen (PCNA), identified the lysine residue involved in ATP binding, and validated the protein's capacity in ATP binding with an independent assay. The ICAP approach described in the present paper should be generally applicable for the quantitative assessment of ATP-binding proteins in proteomic samples from cells and tissues.
ATP 结合蛋白在许多细胞过程中发挥着重要作用。在这里,我们引入了一种新型的同位素编码 ATP 亲和探针 (ICAP) 作为酰化剂,同时富集和掺入同位素标记到 ATP 结合蛋白中。利用这种同位素编码探针的定量能力,我们设计了一种亲和谱分析策略,全面表征整个蛋白质组尺度上的 ATP-蛋白相互作用。通过比较低浓度和高浓度的 ICAP 试剂对赖氨酸残基的标记行为,有效地最小化了非特异性标记导致的 ATP 结合位点的假阳性鉴定。用这种亲和谱分析方法验证了来自 HeLa-S3 和 Jurkat-T 细胞裂解物的 258 个先前已知的 ATP 结合蛋白。此外,我们证明这种新型的定量 ATP 亲和谱分析策略特别有助于揭示 ATP 结合蛋白中以前未被识别的核苷酸结合位点。例如,我们的谱分析结果显示 HSP90 中的 K356 是一个新的 ATP 结合位点。此外,根据我们的定量亲和谱分析结果,预测 293 个没有记录到与 ATP 结合的 GO 的蛋白质是 ATP 结合蛋白。我们还首次揭示了人增殖细胞核抗原 (PCNA) 的 ATP 结合能力,确定了参与 ATP 结合的赖氨酸残基,并通过独立的测定验证了该蛋白的 ATP 结合能力。本文中描述的 ICAP 方法应该可以普遍应用于细胞和组织蛋白质组样品中 ATP 结合蛋白的定量评估。