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Reduced expression of small GTPases and hypermethylation of the folate binding protein gene in cisplatin-resistant cells

机译:顺铂耐药细胞中小GTPase的表达减少和叶酸结合蛋白基因的高度甲基化

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Reduced accumulation of cisplatin is the most consistent feature seen in cisplatin-resistant (CP-r) cells that are cross-resistant to other cytotoxic compounds, such as methotrexate. In this report, defective uptake of a broad range of compounds, including [14C]-carboplatin, [3H]MTX, [3H]folic acid (FA), [125I]epidermal growth factor, 59Fe, [3H]glucose, and [3H]proline, as well as 73As5+ and 73As3+, was detected in CP-r human hepatoma and epidermal carcinoma cells that we have previously shown are defective in fluid-phase endocytosis. Downregulation of several small GTPases, such as rab5, rac1, and rhoA, which regulate endocytosis, was found in CP-r cells. However, expression of an early endosomal protein and clathrin heavy chain was not changed, suggesting that the defective endocytic pathway is clathrin independent. Reduced expression of the cell surface protein, folate-binding protein (FBP), which is a carrier for the uptake of MTX, was also observed in the CP-r cells by confocal immunofluorescence microscopy and Real-Time PCR. Reactivation of the silenced FBP gene in the CP-r cells by a DNA demethylation agent, 2-deoxy-5-aza-cytidine (DAC) demonstrates that hypermethylation occurred in the CP-r cells. The uptake of [14C]carboplatin, [3H]FA, and [3H]MTX increased in an early stage CP-r cell line (KB-CP1) after treatment with DAC. Both a defective endocytic pathway and DNA hypermethylation resulting in the downregulation of small regulatory GTPases and cell surface receptors contribute to the reduced accumulation of a broad range of compounds in CP-r cells.
机译:顺铂积累减少是在对其他细胞毒性化合物(例如甲氨蝶呤)具有交叉耐药性的顺铂耐药(CP-r)细胞中看到的最一致的特征。在此报告中,多种化合物的摄取不良,包括[14C]-卡铂,[3H] MTX,[3H]叶酸(FA),[125I]表皮生长因子,59Fe,[3H]葡萄糖和[在CP-r人肝癌细胞和表皮癌细胞中检测到3H]脯氨酸以及73As5 +和73As3 +,我们先前显示它们在液相内吞中存在缺陷。在CP-r细胞中发现了几种调节内吞作用的小GTP酶(如rab5,rac1和rhoA)的下调。但是,早期的内体蛋白和网格蛋白重链的表达没有改变,表明缺陷的内吞途径是网格蛋白独立的。通过共聚焦免疫荧光显微镜和实时荧光定量PCR,在CP-r细胞中也观察到了细胞表面蛋白叶酸结合蛋白(FBP)的表达降低,而叶酸结合蛋白是MTX的吸收载体。 DNA脱甲基剂2-deoxy-5-aza-cytidine(DAC)对CP-r细胞中沉默的FBP基因的重新激活表明CP-r细胞中发生了甲基化。 DAC处理后的早期CP-r细胞系(KB-CP1)中[14C]卡铂,[3H] FA和[3H] MTX的摄取增加。缺陷的内吞途径和DNA高甲基化都会导致小的调节性GTPases和细胞表面受体的下调,这有助于减少CP-r细胞中多种化合物的积累。

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