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通过对全细胞裂解物的 N-糖蛋白质组学特征分析鉴定 MCF-7/ADR 癌症干细胞的假定 N-糖蛋白标志物。

Putative N-glycoprotein markers of MCF-7/ADR cancer stem cells from N-glycoproteomics characterization of the whole cell lysate.

机构信息

School of Chemical Science & Engineering, Shanghai Key Laboratory of Chemical Assessment and Sustainability, Tongji University, Shanghai, 200092, China.

School of Pharmacy, Nanjing Medical University, Nanjing, 211166, China.

出版信息

Talanta. 2021 Sep 1;232:122437. doi: 10.1016/j.talanta.2021.122437. Epub 2021 Apr 30.

Abstract

Breast cancer is one of the most malignant diseases among females. N-glycoproteomics studies have shown that N-glycosylation alteration of tumor cells is the key player of cancer progression, multidrug resistance (MDR) and high mortality. Cancer stem cells (CSCs) have the remarkable potential of self-renewing and differentiation which leads to drug resistance and metastasis. To investigate the differentially expressed N-glycosylation in adriamycin-resistant breast cancer stem cells MCF-7/ADR CSCs (relative to MCF-7 CSCs) and find the putative biomarkers, 1:1 paired ZIC-HILIC-enriched and stable isotopic diethyl labelled (SIDE) intact N-glycopeptides from MCF-7/ADR CSCs and MCF-7 CSCs were analyzed with C18-RPLC-ESI-MS/MS (HCD with stepped NCE); differentially expressed intact N-glycopeptides (DEGPs) were identified and quantified via search engine GPSeeker. With control of spectrum-level FDR≤1%, 5515 intact N-glycopeptides were identified (1737 N-glycosites, 1705 peptide backbones and 1516 intact N-glycoproteins; 181 putative N-glycan linkages and 68 monosaccharide compositions). Among 5515 intact N-glycopeptide IDs, 3864 were identified with glycoform score≥1, i.e., one or more structure-diagnostic fragment ions were observed to distinguish sequence isomers. With the three technical replicates and the criteria of fold change≥1.5 and p value<0.05, 380 DEGPs (corresponding to 153 intact N-glycoproteins) were found along with 293 down-regulated and 87 up-regulated. For these 153 intact N-glycoproteins, the molecular functions and biological processes of were comprehensively discussed, and side-to-side comparison of differential expression results with other method were also made.

摘要

乳腺癌是女性中最恶性的疾病之一。N-糖蛋白组学研究表明,肿瘤细胞的 N-糖基化改变是癌症进展、多药耐药 (MDR) 和高死亡率的关键因素。癌症干细胞 (CSC) 具有自我更新和分化的显著潜力,导致耐药性和转移。为了研究阿霉素耐药乳腺癌干细胞 MCF-7/ADR CSCs(相对于 MCF-7 CSCs)中差异表达的 N-糖基化,并寻找潜在的生物标志物,我们采用 ZIC-HILIC 富集和稳定同位素双乙基标记 (SIDE) 方法对 MCF-7/ADR CSCs 和 MCF-7 CSCs 中的 1:1 配对完整 N-糖肽进行分析,采用 C18-RPLC-ESI-MS/MS(HCD 与分步 NCE);通过搜索引擎 GPSeeker 鉴定和定量差异表达的完整 N-糖肽 (DEGPs)。在谱级 FDR≤1%的控制下,共鉴定出 5515 个完整的 N-糖肽(1737 个 N-糖基位点、1705 个肽骨干和 1516 个完整的 N-糖蛋白;181 个潜在的 N-聚糖连接和 68 个单糖组成)。在 5515 个完整的 N-糖肽 ID 中,有 3864 个糖型评分≥1,即观察到一个或多个结构诊断片段离子来区分序列异构体。使用三个技术重复和倍数变化≥1.5 和 p 值<0.05 的标准,发现 380 个 DEGPs(对应 153 个完整的 N-糖蛋白),其中 293 个下调,87 个上调。对于这 153 个完整的 N-糖蛋白,全面讨论了它们的分子功能和生物学过程,并与其他方法的差异表达结果进行了对比。

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