首页> 外文OA文献 >Improved localization of glucose-6-phosphate dehydrogenase activity in cells with 5-cyano-2,3-ditolyl-tetrazolium chloride as fluorescent redox dye reveals its cell cycle-dependent regulation
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Improved localization of glucose-6-phosphate dehydrogenase activity in cells with 5-cyano-2,3-ditolyl-tetrazolium chloride as fluorescent redox dye reveals its cell cycle-dependent regulation

机译:用5-氰基2,3-二甲苯基四唑鎓氯化物作为荧光氧化还原染料,改善了细胞中葡萄糖6-磷酸脱氢酶活性的定位,揭示了其细胞周期依赖性调节

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摘要

Since the introduction of cyano-ditolyl-tetrazolium chloride (CTC), a tetrazolium salt that gives rise to a fluorescent formazan after reduction, it has been applied to quantify activity of dehydrogenases in individual cells using flow cytometry. Confocal laser scanning microscopy (CLSM) showed that the fluorescent formazan was exclusively localized at the surface of individual cells and not at intracellular sites of enzyme activity. In the present study, the technique has been optimized to localize activity of glucose-6-phosphate dehydrogenase (G6PD) intracellularly in individual cells. Activity was demonstrated in cultured fibrosarcoma cells in different stages of the cell cycle. Cells were incubated for the detection of G6PD activity using a medium containing 6% (w/v) polyvinyl alcohol, 5 mM CTC, magnesium chloride, sodium azide, the electron carrier methoxyphenazine methosulphate, NADP, and glucose-6-phosphate. Before incubation, cells were permeabilized with 0.025% glutaraldehyde. Fluorescent formazan was localized exclusively in the cytoplasm of fibrosarcoma cells. The amount of fluorescent formazan in cells increased linearly with incubation time when measured with flow cytometry and CLSM. When combining the Hoechst staining for DNA with the CTC method for the demonstration of G6PD activity, flow cytometry showed that G6PD activity of cells in S phase and G2/M phase is 27 +/- 4% and 43 +/- 4% higher, respectively, than that of cells in G1 phase. CLSM revealed that cells in all phases of mitosis as well as during apoptosis contained considerably lower G6PD activity than cells in interphase. It is concluded that posttranslational regulation of G6PD is responsible for this cell cycle-dependent activity
机译:由于引入了氰基-Ditolyl-四唑鎓氯化物(CTC)(一种四唑鎓盐,还原后会生成荧光甲maz),因此已使用流式细胞术将其应用于定量单个细胞中脱氢酶的活性。共聚焦激光扫描显微镜(CLSM)显示,荧光甲maz仅位于单个细胞的表面,而不位于酶活性的细胞内部位。在本研究中,该技术已进行了优化,以定位单个细胞内细胞内葡萄糖6磷酸脱氢酶(G6PD)的活性。在细胞周期的不同阶段,在培养的纤维肉瘤细胞中显示出活性。使用含有6%(w / v)聚乙烯醇,5 mM CTC,氯化镁,叠氮化钠,电子载体甲磺酸吩嗪甲基硫酸盐,NADP和6-磷酸葡萄糖的培养基孵育细胞以检测G6PD活性。孵育前,将细胞用0.025%戊二醛渗透。荧光甲maz仅位于纤维肉瘤细胞的细胞质中。用流式细胞仪和CLSM测量时,细胞中荧光甲maz的含量随孵育时间线性增加。流式细胞仪检测DNA的Hoechst染色与CTC方法结合以证明G6PD活性时,流式细胞仪显示S期和G2 / M期细胞的G6PD活性高27 +/- 4%和43 +/- 4%,分别高于G1期的细胞。 CLSM揭示,有丝分裂所有阶段以及凋亡过程中的细胞所含的G6PD活性均低于相间细胞。结论是,G6PD的翻译后调控是这种细胞周期依赖性活动的原因

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