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质谱分析蛋白质结构细节可完善浸润性导管乳腺癌的蛋白质组特征。

Mass spectrometric characterization of protein structure details refines the proteome signature for invasive ductal breast carcinoma.

机构信息

Proteome Center Rostock, Department for Proteome Research, Institute of Immunology, Medical Faculty, University of Rostock, Schillingallee 69, P.O. Box 100 888, Rostock 18055, Germany.

出版信息

J Am Soc Mass Spectrom. 2011 Mar;22(3):440-56. doi: 10.1007/s13361-010-0031-6. Epub 2011 Feb 8.

Abstract

Early diagnosis as well as individualized therapies are necessary to reduce the mortality of breast cancer, and personalized patient care strategies rely on novel prognostic or predictive factors. In this study, with six breast cancer patients, 2D gel analysis was applied for studying protein expression differences in order to distinguish invasive ductal breast carcinoma, the most frequent breast tumor subtype, from control samples. In total, 1203 protein spots were assembled in a 2D reference gel. Differentially abundant spots were subjected to peptide mass fingerprinting for protein identification. Twenty proteins with their corresponding 38 differentially expressed 2D gel spots were contained in our previously reported proteome signature, suggesting that distinct protein forms were contributing. In-depth MS/MS measurements enabled analyses of protein structure details of selected proteins. In protein spots that significantly contributed to our signature, we found that glyceraldehyde-3-phosphate dehydrogenase was N-terminally truncated, pyruvate kinase M2 and nucleoside diphosphate kinase A but not other isoforms of these proteins were of importance, and nucleophosmin phosphorylation at serine residues 106 and 125 were clearly identified. Principle component analysis and hierarchical clustering with normalized quantitative data from the 38 spots resulted in accurate separation of tumor from control samples. Thus, separation of tissue samples as in our initial proteome signature could be confirmed even with a different proteome analysis platform. In addition, detailed protein structure investigations enabled refining our proteome signature for invasive ductal breast carcinoma, opening the way to structure-/function studies with respect to disease processes and/or therapeutic intervention.

摘要

早期诊断和个体化治疗对于降低乳腺癌死亡率是必要的,而个性化的患者护理策略依赖于新的预后或预测因素。在这项研究中,我们对 6 位乳腺癌患者进行了 2D 凝胶分析,以研究蛋白表达差异,从而区分最常见的乳腺癌亚型浸润性导管癌和对照样本。总共组装了 1203 个蛋白点的 2D 参考凝胶。差异丰度的蛋白点用于肽质量指纹图谱分析以鉴定蛋白。20 个蛋白及其对应的 38 个差异表达的 2D 凝胶点包含在我们之前报道的蛋白质组特征中,表明存在不同的蛋白形式。深入的 MS/MS 测量可分析选定蛋白的结构细节。在显著影响我们特征的蛋白点中,我们发现甘油醛-3-磷酸脱氢酶 N 端截短,丙酮酸激酶 M2 和核苷二磷酸激酶 A 但不是这些蛋白的其他同工型很重要,核磷蛋白丝氨酸残基 106 和 125 的磷酸化明显。基于主成分分析和对 38 个点的归一化定量数据的层次聚类,实现了肿瘤与对照样本的准确分离。因此,即使使用不同的蛋白质组分析平台,也可以确认我们最初的蛋白质组特征中的组织样本分离。此外,详细的蛋白质结构研究使我们能够改进用于浸润性导管乳腺癌的蛋白质组特征,为疾病过程和/或治疗干预的结构/功能研究开辟了道路。

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