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首页> 外文期刊>Journal of proteome research >Comparative Membrane N-Glycomics of Different Breast Cancer Cell Lines To Understand Breast Cancer Brain Metastasis
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Comparative Membrane N-Glycomics of Different Breast Cancer Cell Lines To Understand Breast Cancer Brain Metastasis

机译:不同乳腺癌细胞系的比较膜N-糖类,了解乳腺癌脑转移

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摘要

The mechanism of brain metastatic breast cancer has gained attention because of its increased incidence rate and its low survival rate. Aberrant protein glycosylation is thought to be a contributing factor in this metastatic mechanism, in which metastatic cancer cells can pass through the blood-brain barrier (BBB). The cell membrane is the outermost layer of a cell and in direct contact with the environment and with other cells, making membrane glycans especially important in many biological processes that include mediating cell-cell adhesion, cell signaling, and interactions. Thus, membrane glycomics has attracted more interest for a variety of disease studies in recent years. To reveal the role that membrane N-glycans play in breast cancer brain metastasis, in this study, membrane enrichment was achieved by ultracentrifugation. Liquid chromatography-tandem mass spectrometry was employed to analyze enriched membrane N-glycomes from five breast cancer cell lines and one brain cancer cell line. Relative quantitative glycomic data from each cell line were compared to MDA-MB-231BR, which is the brain-seeking cell line. The higher sialylation level observed in MDA-MB-231BR suggested the importance of sialylation as it might assist with cell invasion and the penetration of the BBB. Some highly sialylated N-glycans, such as HexNAc(5)Flex(6)DeoxyHex(1)NeuAc(3) and HexNAc(6)Hex(7)DeoxyHex(1)NeuAc(3), exhibited higher abundances in 231BR, indicating their possible contributions to breast cancer brain metastasis as well as their potential to be indicators for the breast cancer brain metastasis.
机译:由于其发病率增加及其生存率低,脑转移性乳腺癌的机制已经受到关注。异常蛋白质糖基化被认为是这种转移机制的贡献因素,其中转移性癌细胞可以通过血脑屏障(BBB)。细胞膜是细胞的最外层,并且与环境和其他细胞直接接触,使膜聚糖在许多生物过程中尤其重要,其包括介导细胞 - 细胞粘附,细胞信号传导和相互作用。因此,近年来,膜糖类对各种疾病研究引起了更多的疾病。为了揭示膜N-聚糖在乳腺癌脑转移中发挥的作用,在本研究中,通过超速离心实现膜富集。液相色谱 - 串联质谱法用于分析来自五种乳腺癌细胞系和一种脑癌细胞系的富集膜N-糖粉。将来自每个细胞系的相对定量糖类数据与MDA-MB-231BR进行比较,即脑寻找细胞系。在MDA-MB-231BR中观察到的唾液酸化水平表明唾液酸化的重要性,因为它可能有助于细胞侵袭和BBB的渗透。一些高度唾液酸化的N-聚糖,如肝脏(5)弯曲(6)脱氧烯(1)NeuAc(3)和六克(6)六克(7)脱氧(1)Neuac(3),在231BR中表现出更高的丰富,表明他们对乳腺癌脑转移的可能贡献以及它们是乳腺癌脑转移的指标的可能性。

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