Department of Chemistry, University of California, Davis, 1 Shields Avenue, Davis, California, 95616, USA.
Molecular Diagnostics and Cellular Therapeutics Laboratory, Lung Center of the Philippines, Quezon City, 1100, Philippines.
Glycobiology. 2024 Apr 24;34(6). doi: 10.1093/glycob/cwae030.
Biological experiments are often conducted in vitro using immortalized cells due to their accessibility and ease of propagation compared to primary cells and live animals. However, immortalized cells may present different proteomic and glycoproteomic characteristics from the primary cell source due to the introduction of genes that enhance proliferation (e.g. CDK4) or enable telomere lengthening. To demonstrate the changes in phenotype upon CDK4-transformation, we performed LC-MS/MS glycomic and proteomic characterizations of a human lung cancer primary cell line (DTW75) and a CDK4-transformed cell line (GL01) derived from DTW75. We observed that the primary and CDK4-transformed cells expressed significantly different levels of sialylated, fucosylated, and sialofucosylated N-glycans. Specifically, the primary cells expressed higher levels of hybrid- and complex-type sialylated N-glycans, while CDK4-transformed cells expressed higher levels of complex-type fucosylated and sialofucosylated N-glycans. Further, we compared the proteomic differences between the cell lines and found that CDK4-transformed cells expressed higher levels of RNA-binding and adhesion proteins. Further, we observed that the CDK4-transformed cells changed N-glycosylation after 31 days in cell culture, with a decrease in high-mannose and increase in fucosylated, sialylated, and sialofucosylated N-glycans. Identifying these changes between primary and CDK4-transformed cells will provide useful insight when adapting cell lines that more closely resemble in vivo physiological conditions.
生物实验通常在体外使用永生化细胞进行,因为与原代细胞和活体动物相比,永生化细胞更容易获得且易于繁殖。然而,由于引入了增强增殖的基因(例如 CDK4)或使端粒延长的基因,永生化细胞可能会呈现出与原代细胞来源不同的蛋白质组学和糖蛋白质组学特征。为了证明 CDK4 转化后表型的变化,我们对人肺癌原代细胞系(DTW75)和源自 DTW75 的 CDK4 转化细胞系(GL01)进行了 LC-MS/MS 糖组学和蛋白质组学表征。我们观察到原代细胞和 CDK4 转化细胞表达的唾液酸化、岩藻糖化和唾液酸化岩藻糖化 N-聚糖水平显著不同。具体而言,原代细胞表达更高水平的杂合型和复杂型唾液酸化 N-聚糖,而 CDK4 转化细胞表达更高水平的复杂型岩藻糖化和唾液酸化岩藻糖化 N-聚糖。此外,我们比较了细胞系之间的蛋白质组学差异,发现 CDK4 转化细胞表达更高水平的 RNA 结合蛋白和粘附蛋白。此外,我们观察到 CDK4 转化细胞在细胞培养 31 天后改变了 N-糖基化,高甘露糖型 N-聚糖减少,岩藻糖化、唾液酸化和唾液酸化岩藻糖化 N-聚糖增加。当适应更接近体内生理条件的细胞系时,鉴定原代细胞和 CDK4 转化细胞之间的这些变化将提供有用的见解。