College of Laboratory Medicine, Dalian Medical University, Dalian 116044, Liaoning Province, China.
Int J Biochem Cell Biol. 2012 Aug;44(8):1244-53. doi: 10.1016/j.biocel.2012.04.026. Epub 2012 May 11.
Correlations of disease phenotypes with glycosylation changes have been analyzed intensively in tumor biology field. In this study we describe glycomic alterations of multidrug resistance in human leukemia cell lines. Using multiple glycan profiling tools: real-time PCR for quantification of glycogenes, FITC-lectin binding for glycan profiling, and mass spectrometry for glycan composition, we compared the glycomics of drug-resistant K562/ADR cells with parental K562 line. The results showed that the expression of glycogenes, glycan profiling and N-glycan composition were different in K562/ADR cells, as compared with those in K562 cells, whereas O-glycans of the two cell lines showed no different mass spectra. Further analysis of the N-glycan regulation by way of tunicamycin application or PNGase F treatment in K562/ADR cells showed partial inhibition of biosynthesis and increased sensitivity to chemotherapeutic drugs in vitro. We targeted glycogene B3GNT8 and ST8SIA4, which were over-expressed in K562/ADR cells, and silenced the expression levels of two glycogenes after using RNA interference approach. The results showed that the silencing of B3GNT8 or ST8SIA4 in K562/ADR cells resulted in increased chemosensitivity to anti-tumor drugs. In conclusion, glycomic alterations are responsible for the overcoming multidrug resistance in human leukemia therapy and the N-linked oligosaccharides are associated with the drug resistance of cancer cells.
疾病表型与糖基化改变的相关性在肿瘤生物学领域得到了深入分析。在这项研究中,我们描述了人白血病细胞系多药耐药性的糖组学改变。使用多种聚糖分析工具:实时定量 PCR 用于糖基因定量、FITC-凝集素结合用于聚糖分析以及质谱用于聚糖组成,我们比较了耐药 K562/ADR 细胞与亲本 K562 细胞的糖组学。结果表明,与 K562 细胞相比,K562/ADR 细胞中的糖基因表达、聚糖谱和 N-聚糖组成存在差异,而两种细胞系的 O-聚糖质谱没有差异。通过在 K562/ADR 细胞中应用衣霉素或 PNGase F 处理对 N-聚糖调控的进一步分析表明,生物合成部分抑制和体外对化疗药物的敏感性增加。我们针对在 K562/ADR 细胞中过度表达的糖基转移酶基因 B3GNT8 和 ST8SIA4,并通过 RNA 干扰方法沉默两种糖基转移酶基因的表达水平。结果表明,K562/ADR 细胞中 B3GNT8 或 ST8SIA4 的沉默导致对抗肿瘤药物的敏感性增加。总之,糖组学改变是导致人类白血病治疗中多药耐药性克服的原因,而 N-连接的寡糖与癌细胞的耐药性有关。