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表位组学:肺癌患者和对照受试者血浆中 C9 表位异质性分析。

Epitomics: Analysis of Plasma C9 Epitope Heterogeneity in the Plasma of Lung Cancer Patients and Control Subjects.

机构信息

Department of Human Genetics, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary.

Department of Pulmonology, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary.

出版信息

Int J Mol Sci. 2023 Sep 21;24(18):14359. doi: 10.3390/ijms241814359.

Abstract

The human proteome is more complex than the genetic code predicts it to be. Epitomics, or protein epitome profiling, is a tool for understanding sub-protein level variation. With the ultimate goal to explore C9 proteoforms and their relevance to lung cancer, here we report plasma C9 epitope-associated molecular heterogeneity in plasma samples of lung cancer patients and control subjects. We show three C9 epitopes (BSI0449, BSI0581, BSI0639) with markedly different association with lung cancer ("unaltered", "upregulated" and "downregulated"). In order to exclude confounding effects, we show first that the three epitope-defining mAbs recognize C9 in purified form and in the natural context, in the human plasma. Then, we present data demonstrating the lack of major epitope interdependence or overlap. The next experiments represent a quest toward the understanding of the molecular basis of apparent disparate association with lung cancer. Using immunochemistry, SDS PAGE and LC-MS/MS technologies, we demonstrate that epitope-specific immunoprecipitates of plasma C9 seem identical regarding peptide sequence. However, we found epitope-specific posttranslational modification and coprecipitated protein composition differences with respect to control and lung cancer plasma. Epitope profiling enabled the classification of hypothetical C9 proteoforms through differential association with lung cancer.

摘要

人类蛋白质组比遗传密码预测的要复杂。表位组学或蛋白质表位谱分析是理解亚蛋白质水平变异的工具。我们的最终目标是探索 C9 蛋白水解物及其与肺癌的相关性,在此我们报告了肺癌患者和对照受试者血浆样本中 C9 表位相关分子异质性。我们显示了三个与肺癌明显相关的 C9 表位(BSI0449、BSI0581、BSI0639)(“未改变”、“上调”和“下调”)。为了排除混杂效应,我们首先表明,这三个表位定义的 mAb 在纯化形式和人类血浆的自然环境中识别 C9。然后,我们提供的数据表明,这些表位之间不存在主要的相互依赖性或重叠。接下来的实验旨在深入了解与肺癌明显相关的分子基础。我们使用免疫化学、SDS PAGE 和 LC-MS/MS 技术,证明了针对血浆 C9 的表位特异性免疫沉淀在肽序列方面似乎是相同的。然而,我们发现针对控制和肺癌血浆的表位特异性翻译后修饰和共沉淀蛋白组成存在差异。通过与肺癌的不同关联,表位谱分析能够对假设的 C9 蛋白水解物进行分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02e1/10531758/81310785042c/ijms-24-14359-g001.jpg

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