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动态3D网络涂层复合材料可实现磷酸肽的全局分离、单磷酸肽和多磷酸肽的逐步分离以及人肺细胞的磷酸蛋白质组学研究。

Dynamic 3D-Network Coating Composite Enables Global Isolation of Phosphopeptides, Stepwise Separation of Mono- and Multi-Phosphopeptides, and Phosphoproteomics of Human Lung Cells.

作者信息

Liu Linlin, Chen Zhenhua, Wang Danni, Liang Weida, Wang Binbin, Xia Chenglong, Yan Yinghua, Ding Chuanfan, Meng Xiaodan, Liang Hongze

机构信息

Key Laboratory of Advanced Mass Spectrometry and Molecular Analysis of Zhejiang Province, School of Materials Science and Chemical Engineering, Ningbo University, Ningbo 315211, China.

Health Science Center, Ningbo University, Ningbo 315211, China.

出版信息

Biomolecules. 2025 Jun 18;15(6):894. doi: 10.3390/biom15060894.

Abstract

Protein phosphorylation is one of the most common and important post-translational modifications (PTMs) and is highly involved in various biological processes. Ideal adsorbents with high sensitivity and specificity toward phosphopeptides with large coverage are therefore essential for enrichment and mass spectroscopy-based phosphoproteomics analysis. In this study, a newly designed IMAC adsorbent composite was constructed on the graphene matrix coated with mesoporous silica. The outer functional 3D-network layer was prepared by free radical polymerization of the phosphonate-functionalized vinyl imidazolium salt monomer and subsequent metal immobilization. Due to its unique structural feature and high content of Ti ions, the resulting phosphonate-immobilized adsorbent composite G@mSiO@PPFIL-Ti exhibits excellent performance in phosphopeptide enrichment with a low detection limit (0.1 fmol, tryptic β-casein digest) and superior selectivity (molar ratio of 1:15,000, digest mixture of β-casein and bovine serum albumin). G@mSiO@PPFIL-Ti displays high tolerance to loading and elution conditions and thus can be reused without a marked decrease in enrichment efficacy. The captured phosphopeptides can be released globally, and mono-/multi-phosphopeptides can be isolated stepwise by gradient elution. When applying this material to enrich phosphopeptides from human lung cell lysates, a total of 3268 unique phosphopeptides were identified, corresponding to 1293 phosphoproteins. Furthermore, 2698 phosphorylated peptides were found to be differentially expressed ( < 0.05) between human lung adenocarcinoma cells (SPC-A1) and human normal epithelial cells (Beas-2B), of which 1592 were upregulated and 1106 were downregulated in the cancer group. These results demonstrate the material's superior enrichment efficiency in complex biological samples.

摘要

蛋白质磷酸化是最常见且重要的翻译后修饰(PTM)之一,高度参与各种生物过程。因此,对于基于质谱的磷酸化蛋白质组学分析中的磷酸肽富集而言,具有高灵敏度、高特异性且覆盖范围广的理想吸附剂至关重要。在本研究中,一种新设计的固定化金属亲和色谱(IMAC)吸附剂复合材料构建于涂覆有介孔二氧化硅的石墨烯基质上。外部功能性三维网络层通过膦酸酯功能化的乙烯基咪唑盐单体的自由基聚合以及随后的金属固定化制备而成。由于其独特的结构特征和高含量的钛离子,所得的膦酸酯固定化吸附剂复合材料G@mSiO@PPFIL-Ti在磷酸肽富集方面表现出优异的性能,检测限低(0.1 fmol,胰蛋白酶消化的β-酪蛋白)且选择性高(摩尔比为1:15,000,β-酪蛋白和牛血清白蛋白的消化混合物)。G@mSiO@PPFIL-Ti对加载和洗脱条件具有高耐受性,因此可以重复使用而富集效率无明显下降。捕获的磷酸肽可以整体释放,单磷酸肽/多磷酸肽可以通过梯度洗脱逐步分离。当将这种材料应用于人肺细胞裂解物中磷酸肽的富集时,共鉴定出3268个独特的磷酸肽,对应于1293种磷酸化蛋白质。此外,发现2698个磷酸化肽在人肺腺癌细胞(SPC-A1)和人正常上皮细胞(Beas-2B)之间差异表达(<0.05),其中癌症组中有1592个上调,1106个下调。这些结果证明了该材料在复杂生物样品中的优异富集效率。

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