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Inverse ~(18)O Labeling Mass Spectrometry for the Rapid Identification of Marker/Target Proteins

机译:〜(18)O逆标记质谱用于标记物/靶蛋白的快速鉴定

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Systematic analysis of proteins is essential in understanding human diseases and their clinical treatments. To achieve the rapid and unambiguous identification of marker or target proteins, a new procedure termed "inverse labeling" is proposed. With this procedure, to evaluate protein expression of a diseased or a drug-treated sample in comparison with a control sample, two converse labeling experiments are performed in parallel. The perturbed sample (by disease or by drug treatment) is labeled in one experiment, whereas the control is labeled in the second experiment. When mixed and analyzed with its unlabeled counterpart for differential comparison using mass spectrometry, a characteristic inverse labeling pattern of mass shift will be observed between the two parallel analyses for proteins that are differentially expressed. In this study, protein labeling is achieved through ~(18)O incorporation into peptides by proteolysis performed in [~(18)O]water. Once the peptides are identified with the characteristic inverse labeling pattern of ~(18)O/~(16)O ion intensity shift, MS data of peptide fingerprints or peptide sequence information can be used to search a protein database for protein identification. The methodology has been applied successfully to two model systems in this study. It permits quick focus on the signals of differentially expressed proteins. It eliminates the detection ambiguities caused by the dynamic range of detection on proteins of extreme changes in expression. It enables the detection of protein modifications responding to perturbation. This strategy can also be extended to other protein-labeling methods, such as chemical or metabolic labeling, to realize the same benefits.
机译:蛋白质的系统分析对于理解人类疾病及其临床治疗至关重要。为了实现标记物或靶蛋白的快速和明确的鉴定,提出了一种称为“反向标记”的新方法。通过此程序,为了评估与对照样品相比患病或药物治疗样品的蛋白质表达,平行进行了两个相反的标记实验。在一个实验中标记了受干扰的样品(通过疾病或药物处理),而在第二个实验中则标记了对照。当将其与未标记的对应物混合并进行质谱分析以进行差异比较时,将在两次平行分析之间观察到差异表达的蛋白质的特征性质量转移逆标记模式。在这项研究中,蛋白质标记是通过在[〜(18)O]水中进行蛋白水解而通过将〜(18)O掺入肽中来实现的。一旦以〜(18)O /〜(16)O离子强度变化的特征性逆标记模式鉴定了肽,就可以使用肽指纹图谱的MS数据或肽序列信息搜索蛋白质数据库以进行蛋白质鉴定。该方法已成功应用于本研究中的两个模型系统。它可以快速关注差异表达蛋白的信号。它消除了由表达范围极端变化的蛋白质的动态检测范围引起的检测歧义。它使得能够检测响应于扰动的蛋白质修饰。该策略还可以扩展到其他蛋白质标记方法,例如化学或代谢标记,以实现相同的好处。

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