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Ceramide Glycanase Activities in Human Cancer Cells

机译:人癌细胞中的神经酰胺糖苷酶活性

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Ceramide glycanase (CGase) activities have been detected in different human tumor cells (colon, carcinoma Colo-205; neuroblastoma, IMR-32; breast cancer lines, SKBr3 and MCF7). However, the level of enzymatic activity is lower in these cells compared to that present in other mammalian tissues reported before (Basu, M., Kelly, P., Girzadas, M. A., Li, Z., and Basu, S. Methods Enzymol. (in press)). The majority of CGase activity was found in the 100,000g soluble supernatant fraction isolated from all these cell lines and tissues. Using the soluble enzyme, the requirement for optimum CGase activity was found to be consistent with previous observations found for rat and rabbit tissues (Basu, M., Dastgheib, S., Girzadas, M. A., O'Donnell, P. H., Westervelt, C. W., Li, Z., Inokuchi, J. I., and Basu, S. (1998) Acta Pol. Biochim. 42:327). The CGase activities from both Colo-205 and IMR-32 cells are optimum at a protein to detergent ratio of one. All the mammalian CGases, including human cancer cells, show an optimum pH between 5.5 and 5.8 in sodium acetate buffer. The CGase activities from cancer cells are found to be cation-independent; however, mercury, zinc, and copper ions seem to inhibit the enzyme activity substantially in both tumor cells lines. The mercury ion inhibition of CGase activities from all different sources indicates a possible structural homology in the CGase proteins.Radiolabeled substrates, labeled at the sphingosine double bond or at the 3-position of sphingosine without modifying double bond of sphingosine were used in this investigation. Both were active substrates with all enzyme preparations isolated from different cancer cells (apparent Km, 500 μM for nLcOse5[3H-DT]Cer and 350 μM for GgOse4[sph-3-3H]Cer with Colo-205 enzyme). Structural analogues of ceramide and sphingosine (L-PPMP, L-PDMP, alkylamines, and Tamoxifen) inhibited cancer cell CGase activities in vitro.
机译:已在不同的人类肿瘤细胞(结肠,Colo-205癌,神经母细胞瘤,IMR-32;乳腺癌细胞系,SKBr3和MCF7)中检测到神经酰胺聚糖酶(CGase)活性。但是,与之前报道的其他哺乳动物组织中存在的酶活性相比,这些细胞中的酶活性水平较低(Basu,M.,Kelly,P.,Girzadas,MA,Li,Z.,and Basu,S.Methods Enzymol。 (在新闻))。从所有这些细胞系和组织中分离出的100,000g可溶性上清液馏分中发现了大部分CGase活性。使用可溶性酶后,发现最佳CGase活性的要求与先前对大鼠和兔组织的观察结果一致(Basu,M.,Dastgheib,S.,Girzadas,MA,O'Donnell,PH,Westervelt,CW, Li,Z.,Inokuchi,JI,和Basu,S。(1998)Acta Pol.Biochim.42:327)。当蛋白质与去污剂的比率为1时,来自Colo-205和IMR-32细胞的CGase活性最佳。所有的哺乳动物CGase,包括人类癌细胞,在乙酸钠缓冲液中均显示出5.5至5.8的最佳pH。发现癌细胞的CGase活性不依赖于阳离子。然而,汞,锌和铜离子似乎在两种肿瘤细胞系中都实质上抑制了酶的活性。来自所有不同来源的CGase活性的汞离子抑制表明CGase蛋白中可能存在结构同源性。在这项研究中,使用了放射性标记的底物,在鞘氨醇双键或鞘氨醇的3位标记而不修饰鞘氨醇的双键。两者都是从不同癌细胞分离的所有酶制剂的活性底物(表观Km,nLcOse5 [3H-DT] Cer为500μM,Colo-205酶为GgOse4 [sph-3-3H] Cer为350μM)。神经酰胺和鞘氨醇的结构类似物(L-PPMP,L-PDMP,烷基胺和他莫昔芬)在体外抑制癌细胞的CGase活性。

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