Department of Chemistry, Purdue University, West Lafayette, IN 47907, USA.
J Proteomics. 2011 Oct 19;74(11):2395-416. doi: 10.1016/j.jprot.2011.07.014. Epub 2011 Jul 30.
The focus of this study was on the assessment of technology that might be of clinical utility in identification, quantification, characterization of carbonylation in human plasma proteins. Carbonylation is widely associated with oxidative stress diseases. Breast cancer patient samples were chosen as a stress positive case based on the fact that oxidative stress has been reported to be elevated in this disease. Measurements of 8-isoprostane in plasma confirmed that breast cancer patients in this study were indeed experiencing significant oxidative stress. Carbonyl groups in proteins from freshly drawn blood were derivatized with biotin hydrazide after which the samples were dialyzed and the biotinylated proteins subsequently selected, digested and labeled with iTRAQ™ heavy isotope coding reagent(s). Four hundred sixty proteins were identified and quantified, 95 of which changed 1.5 fold or more in concentration. Beyond confirming the utility of the analytical method, association of protein carbonylation was examined as well. Nearly one fourth of the selected proteins were of cytoplasmic, nuclear, or membrane origin. Analysis of the data by unbiased knowledge assembly methods indicated the most likely disease associated with the proteins was breast neoplasm. Pathway analysis showed the proteins which changed in carbonylation were strongly associated with Brca1, the breast cancer type-1 susceptibility protein. Pathway analysis indicated the major molecular functions of these proteins are defense, immunity and nucleic acid binding.
本研究的重点是评估在鉴定、定量和描述人血浆蛋白质羰基化方面可能具有临床应用价值的技术。羰基化广泛与氧化应激疾病相关。选择乳腺癌患者样本作为阳性应激病例,是基于已报道该疾病存在氧化应激升高的事实。对血浆中 8-异前列腺素的测量证实,本研究中的乳腺癌患者确实经历了显著的氧化应激。从新鲜抽取的血液中的蛋白质羰基与生物素酰肼衍生化,然后对样品进行透析,随后选择、消化并标记带有 iTRAQ™重同位素编码试剂的生物素化蛋白质。鉴定和定量了 460 种蛋白质,其中 95 种的浓度变化了 1.5 倍或更多。除了证实分析方法的实用性外,还检查了蛋白质羰基化的关联。所选蛋白质中有近四分之一来自细胞质、核或膜。通过无偏知识组装方法对数据进行分析表明,与这些蛋白质最相关的疾病是乳腺癌。通路分析表明,在羰基化方面发生变化的蛋白质与乳腺癌 1 型易感蛋白 Brca1 强烈相关。通路分析表明,这些蛋白质的主要分子功能是防御、免疫和核酸结合。