Zentralinstitut für Laboratoriumsmedizin und Pathobiochemie, Charité-Universitätsmedizin Berlin, Campus Virchow Klinikum, Augustenburger Platz 1, 13353 Berlin, Germany.
Neurosci Lett. 2010 Dec 17;486(3):174-8. doi: 10.1016/j.neulet.2010.09.046. Epub 2010 Sep 22.
Aim of this study was to examine the dipeptide transport of β-Ala-Lys-N(ɛ)-AMCA in the human glioma cell line U373-MG and its potential regulation by diverse hormones and culture media. A mixed glial primary cell culture of the newborn rat served as reference cell system. β-Ala-Lys-N(ɛ)-AMCA (β-Ala-Lys-N(ɛ)-7-amino-4-methyl-coumarin-3-acetic acid) is a highly specific reporter substrate to investigate the dipeptide transport system PepT2. We were able to demonstrate that U373-MG cells express PepT2-mRNA and translocate β-Ala-Lys-N(ɛ)-AMCA via PepT2 into the cytoplasm. Previous results demonstrated that β-Ala-Lys-N(ɛ)-AMCA specifically accumulates in differentiated and dedifferentiated astrocytes but neither in differentiated nor dedifferentiated oligodendrocytes and in neurons. U373-MG cells were incubated with estradiol, testosterone, thyronine, dexamethasone, dibutyryl cyclic adenosine monophosphate and tetradecanoylphorbol acetate in order to detect potential substance-dependent changes in dipeptide uptake. There was no significant increase or decrease of β-Ala-Lys-N(ɛ)-AMCA-uptake after stimulation. Northern blot analyses confirmed that PepT2-mRNA is expressed in U373-MG and glial cells but showed no regulation of PepT2-mRNA expression in both cell types. Future investigations might offer the opportunity of an anti-tumor therapy with cytotoxic agents linked to a dipeptide-derivative such as β-Ala-Lys.
本研究旨在探讨β-Ala-Lys-N(ɛ)-AMCA 在人神经胶质瘤细胞系 U373-MG 中的二肽转运及其受多种激素和培养基潜在调节的情况。新生大鼠的混合神经胶质原代细胞培养作为参考细胞系统。β-Ala-Lys-N(ɛ)-AMCA(β-Ala-Lys-N(ɛ)-7-氨基-4-甲基香豆素-3-乙酸)是一种高度特异性的报告底物,可用于研究二肽转运系统 PepT2。我们能够证明 U373-MG 细胞表达 PepT2-mRNA,并通过 PepT2 将 β-Ala-Lys-N(ɛ)-AMCA 转运到细胞质中。先前的结果表明,β-Ala-Lys-N(ɛ)-AMCA 特异性积累在分化和去分化的星形胶质细胞中,但不在分化或去分化的少突胶质细胞和神经元中。U373-MG 细胞用雌二醇、睾酮、甲状腺素、地塞米松、二丁酰环腺苷单磷酸和十四烷酰佛波醇乙酸酯孵育,以检测二肽摄取的潜在物质依赖性变化。刺激后β-Ala-Lys-N(ɛ)-AMCA 摄取没有明显增加或减少。Northern blot 分析证实 PepT2-mRNA 在 U373-MG 和神经胶质细胞中表达,但两种细胞类型的 PepT2-mRNA 表达均无调节。未来的研究可能为使用与二肽衍生物(如β-Ala-Lys)偶联的细胞毒性剂进行抗肿瘤治疗提供机会。