Steinberg Thomas H, Agnew Brian J, Gee Kyle R, Leung Wai-Yee, Goodman Terrie, Schulenberg Birte, Hendrickson Jill, Beechem Joseph M, Haugland Richard P, Patton Wayne F
Proteomics Section, Molecular Probes Inc., 29851 Willow Creek Road, Eugene, OR 97402, USA.
Proteomics. 2003 Jul;3(7):1128-44. doi: 10.1002/pmic.200300434.
Systematic parallel analysis of the phosphorylation status of networks of interacting proteins involved in the regulatory circuitry of cells and tissues is certain to drive research in the post-genomics era for many years to come. Reversible protein phosphorylation plays a critical regulatory role in a multitude of cellular processes, including alterations in signal transduction pathways related to oncogene and tumor suppressor gene products in cancer. While fluorescence detection methods are likely to offer the best solution to global protein quantitation in proteomics, to date, there has been no satisfactory method for the specific and reversible fluorescent detection of gel-separated phosphoproteins from complex samples. The newly developed Pro-Q Diamond phosphoprotein dye technology is suitable for the fluorescent detection of phosphoserine-, phosphothreonine-, and phosphotyrosine-containing proteins directly in sodium dodecyl sulfate (SDS)-polyacrylamide gels and two-dimensional (2-D) gels. Additionally, the technology is appropriate for the determination of protein kinase and phosphatase substrate preference. Other macromolecules, such as DNA, RNA, and sulfated glycans, fail to be detected with Pro-Q Diamond dye. The staining procedure is rapid, simple to perform, readily reversible and fully compatible with modern microchemical analysis procedures, such as matrix-assisted laser desorption/ionization-time of flight (MALDI-TOF) mass spectrometry. Pro-Q Diamond dye technology can detect as little as 1-2 ng of beta-casein, a pentaphosphorylated protein, and 8 ng of pepsin, a monophosphorylated protein. Fluorescence signal intensity correlates with the number of phosphorylated residues on the protein. Through combination of Pro-Q Diamond phosphoprotein stain with SYPRO(R) Ruby protein gel stain, Multiplexed Proteomics technology permits quantitative, dichromatic fluorescence detection of proteins in 2-D gels. This evolving discovery platform allows the parallel determination of protein expression level changes and altered post-translational modification patterns within a single 2-D gel experiment. The linear responses of the fluorescence dyes utilized, allow rigorous quantitation of changes over an unprecedented 500-1000-fold concentration range.
对细胞和组织调节回路中相互作用蛋白质网络的磷酸化状态进行系统的平行分析,必将在未来多年推动后基因组时代的研究。可逆性蛋白质磷酸化在众多细胞过程中发挥着关键的调节作用,包括与癌症中癌基因和肿瘤抑制基因产物相关的信号转导途径的改变。虽然荧光检测方法可能为蛋白质组学中的全局蛋白质定量提供最佳解决方案,但迄今为止,还没有一种令人满意的方法用于从复杂样品中特异性和可逆地荧光检测凝胶分离的磷蛋白。新开发的Pro-Q Diamond磷蛋白染料技术适用于直接在十二烷基硫酸钠(SDS)-聚丙烯酰胺凝胶和二维(2-D)凝胶中对含磷酸丝氨酸、磷酸苏氨酸和磷酸酪氨酸的蛋白质进行荧光检测。此外,该技术适用于确定蛋白激酶和磷酸酶的底物偏好。其他大分子,如DNA、RNA和硫酸化聚糖,不能用Pro-Q Diamond染料检测到。染色过程快速、易于操作、易于逆转,并且与现代微化学分析程序(如基质辅助激光解吸/电离飞行时间(MALDI-TOF)质谱)完全兼容。Pro-Q Diamond染料技术可以检测低至1-2 ng的β-酪蛋白(一种五磷酸化蛋白)和8 ng的胃蛋白酶(一种单磷酸化蛋白)。荧光信号强度与蛋白质上磷酸化残基的数量相关。通过将Pro-Q Diamond磷蛋白染色与SYPRO® Ruby蛋白凝胶染色相结合,多重蛋白质组学技术允许对二维凝胶中的蛋白质进行定量、双色荧光检测。这个不断发展的发现平台允许在单个二维凝胶实验中平行测定蛋白质表达水平变化和翻译后修饰模式的改变。所使用的荧光染料的线性响应允许在前所未有的500-1000倍浓度范围内对变化进行严格定量。