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缺氧可增强培养的神经胶质瘤干细胞中 CD133 的糖基化。

CD133 glycosylation is enhanced by hypoxia in cultured glioma stem cells.

机构信息

Cellular and Molecular Neuro-Oncology Research Group, Institute of Biomedical and Biomolecular Science, School of Pharmacy and Biomedical Sciences, University of Portsmouth, Portsmouth, UK.

出版信息

Int J Oncol. 2013 Mar;42(3):1011-7. doi: 10.3892/ijo.2013.1787. Epub 2013 Jan 22.

Abstract

The cancer stem cell (CSC) marker CD133 is widely expressed in gliomas and employed mostly by use of the CD133/1 antibody which binds the extracellular glycosylated AC133 epitope. CD133 recognition may, however, be affected by its glycosylation pattern and oxygen tension. The present study investigates the effect of oxygen deprivation on CD133 expression and glycosylation status employing a high AC133-expressing glioblastoma multiforme (GBM) cell line, IN699. IN699 cells were cultured under normoxic (21% O2) and hypoxic (3% O2) conditions. CD133 expression was analysed by western blotting (WB), qRT-PCR, immunocytochemistry (ICC) and flow cytometry using the glycosylation-specific antibody CD133/1 and ab19898 which binds the unglycosylated intra-cellular residues of CD133. By flow cytometry, ab19898 detected 94.1% and 96.2% CD133+ cells under normoxia and hypoxia, respectively. Hypoxia significantly increased the percentage of CD133+ cells from 69% to 92% using CD133/1 (p<0.005). Moreover, a significantly higher geomean fluorescence intensity (GMI) was demonstrated by ab19898 (p<0.005) in CD133+ cells. WB and qRT-PCR results were consistent with flow cytometry data. Furthermore, over a period of 72-h incubation under normoxic and hypoxic conditions after autoMACS sorting, an average of 31.8% and 42.2%, respectively, of CD133-negative IN699 cells became positive using CD133/1. Our data show that a) previously reported CD133- cells may have been misidentified using the glycosylation-specific CD133/1 as constitutive expression of CD133 was detected by the intracellular antibody ab19898; b) hypoxia promotes glycosylation status of CD133, indicating possible involvement of glycosylated CD133 in the process of anti-hypoxia-mediated apoptosis.

摘要

癌症干细胞(CSC)标志物 CD133 在神经胶质瘤中广泛表达,主要通过使用 CD133/1 抗体来识别,该抗体结合细胞外糖基化的 AC133 表位。然而,CD133 的识别可能受到其糖基化模式和氧张力的影响。本研究通过使用高表达 AC133 的多形性胶质母细胞瘤(GBM)细胞系 IN699 研究了缺氧对 CD133 表达和糖基化状态的影响。将 IN699 细胞在常氧(21% O2)和低氧(3% O2)条件下培养。通过 Western blot(WB)、qRT-PCR、免疫细胞化学(ICC)和流式细胞术分析 CD133 表达,使用糖基化特异性抗体 CD133/1 和结合 CD133 未糖基化细胞内残基的 ab19898。通过流式细胞术,ab19898 在常氧和低氧下分别检测到 94.1%和 96.2%的 CD133+细胞。与常氧相比,缺氧条件下 CD133/1 检测到的 CD133+细胞百分比从 69%显著增加至 92%(p<0.005)。此外,ab19898 显示 CD133+细胞的几何平均荧光强度(GMI)显著升高(p<0.005)。WB 和 qRT-PCR 结果与流式细胞术数据一致。此外,在自动 MACS 分选后常氧和低氧条件下孵育 72 小时期间,分别有平均 31.8%和 42.2%的 CD133- IN699 细胞使用 CD133/1 变为阳性。我们的数据表明:a)先前报道的 CD133-细胞可能使用糖基化特异性 CD133/1 被错误识别,因为细胞内抗体 ab19898 检测到 CD133 的组成性表达;b)缺氧促进 CD133 的糖基化状态,表明糖基化 CD133 可能参与抗缺氧介导的细胞凋亡过程。

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