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首页> 外文期刊>Journal of proteome research >Proteomics Analysis of Nasopharyngeal Carcinoma Cell Secretome Using a Hollow Fiber Culture System and Mass Spectrometry
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Proteomics Analysis of Nasopharyngeal Carcinoma Cell Secretome Using a Hollow Fiber Culture System and Mass Spectrometry

机译:空心纤维培养系统和质谱分析鼻咽癌细胞分泌蛋白组学

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Secreted proteins, referred to as the secretome, are known to regulate a variety of biological functions and are involved in a multitude of pathological processes. However, some secreted proteins from cell cultures are difficult to detect because of their intrinsic low abundance. They are frequently masked by proteins shed from lysed cells and the substantial amounts of serum proteins used in culture medium. We have proposed an analytical platform for sensitive detection of secreted proteins by utilizing a hollow fiber culture (HFC) system coupled with proteomic approaches. The HFC system enables culture of high-density cells in a small volume where secreted proteins can be accumulated. In addition, cell lysis rates can be greatly reduced, which alleviates the contamination from lysed cells. In this study, nasopharyngeal carcinoma (NPC) cells were utilized to evaluate the efficiency of this system in the collection and analysis of the cell secretome. Cells were adapted to serum-free medium and inoculated into the HFC system. The cell lysis rate in the culture system was estimated to be 0.001-0.022%, as determined by probing four intracellular proteins in the conditioned medium (CM), while a cell lysis rate of 0.32-1.84% was observed in dish cultures. Proteins in the CM were analyzed using SDS-PAGE and liquid chromatography tandem mass spectrometry (LC-MS/MS). A total of 134 proteins were identified in 62 gel bands, of which 61% possess a signal peptide and/or a transmembrane domain. In addition, 37% of the identified secretome were classified as extracellular or membrane proteins, whereas 98% of the lysate proteins were identified as intracellular proteins. We suggest that the HFC system may be used to collect secreted proteins efficiently and facilitate comprehensive characterization of cell secretome.
机译:已知分泌蛋白称为分泌组,可调节多种生物学功能,并参与多种病理过程。但是,由于其固有的低丰度,很难检测到细胞培养物中的某些分泌蛋白。它们经常被裂解细胞释放的蛋白质和培养基中使用的大量血清蛋白质所掩盖。我们已经提出了一种利用蛋白质组学方法结合中空纤维培养(HFC)系统用于敏感检测分泌蛋白的分析平台。 HFC系统可在小体积中培养高密度细胞,并在其中积聚分泌的蛋白质。另外,可以大大降低细胞裂解速率,从而减轻了裂解细胞的污染。在这项研究中,鼻咽癌(NPC)细胞被用来评估该系统在收集和分析细胞分泌组中的效率。使细胞适应无血清培养基,并接种到HFC系统中。通过在条件培养基(CM)中探查四种细胞内蛋白确定,培养系统中的细胞裂解率估计为0.001-0.022%,而在培养皿中观察到的细胞裂解率为0.32-1.84%。使用SDS-PAGE和液相色谱串联质谱(LC-MS / MS)分析CM中的蛋白质。在62条凝胶带中鉴定出总共134种蛋白质,其中61%具有信号肽和/或跨膜结构域。另外,鉴定出的分泌蛋白组中有37%被分类为细胞外或膜蛋白,而裂解物蛋白中有98%被鉴定为细胞内蛋白。我们建议,HFC系统可用于有效收集分泌的蛋白质并促进细胞分泌组的全面表征。

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