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恶性黑色素瘤细胞内糖基化抑制剂诱导的酪氨酸酶黑色素生成特性丧失。

Loss of melanogenic properties in tyrosinases induced by glucosylation inhibitors within malignant melanoma cells.

作者信息

Imokawa G, Mishima Y

出版信息

Cancer Res. 1982 May;42(5):1994-2002.

PMID:6802485
Abstract

Glycosylation inhibitors, glucosamine or tunicamycin, have been found to be specific inhibitory modulators for melanogenesis, which is accentuated generally in malignant melanoma cells. Exposure to glucosamine (1 mg/ml) or tunicamycin (0.2 to 0.4 micrograms/ml) induces a marked pigment loss within melanoma cells in vitro with a decrease in their grown curves. This melanogenic inhibition occurs without a substantial decrease in the synthesis of DNA, RNA, and protein in comparison with a specific, marked suppression of carbohydrate synthesis as revealed by suppressed mannose incorporation into these cells. Assay of tyrosinase of glucosamine- or tunicamycin-induced unpigmented melanoma cells has revealed a selective and marked decrease in the melanosome-rich large-granule fraction, but no substantial decrease in the total activity of remaining subcellular fractions. Electrophoresis of tyrosinase in the 30,000 X g supernatant fraction demonstrates an increase in the T1 form of soluble tyrosinase, while a disappearance of or marked decrease in membrane-bound tyrosinase, T3, is seen in the small- and large-granule fractions. Glycoprotein synthesis in the melanogenic subcellular compartments of pigment cells seems to play an integral role in melanogenesis which is principally enhanced in their carcinogenic status.

摘要

糖基化抑制剂、氨基葡萄糖或衣霉素,已被发现是黑色素生成的特异性抑制调节剂,黑色素生成在恶性黑色素瘤细胞中通常会增强。体外实验中,将黑色素瘤细胞暴露于氨基葡萄糖(1毫克/毫升)或衣霉素(0.2至0.4微克/毫升)中,会导致细胞内色素显著丢失,细胞生长曲线下降。与通过抑制甘露糖掺入细胞所显示的碳水化合物合成的特异性显著抑制相比,这种黑色素生成抑制发生时,DNA、RNA和蛋白质的合成没有大幅减少。对氨基葡萄糖或衣霉素诱导的无色素黑色素瘤细胞的酪氨酸酶进行检测发现,富含黑素小体的大颗粒部分有选择性且显著减少,但其余亚细胞部分的总活性没有大幅下降。在30,000×g上清液部分对酪氨酸酶进行电泳显示,可溶性酪氨酸酶的T1形式增加,而在小颗粒和大颗粒部分中,膜结合酪氨酸酶T3消失或显著减少。色素细胞黑色素生成亚细胞区室中的糖蛋白合成似乎在黑色素生成中起着不可或缺的作用,而黑色素生成在其致癌状态下主要会增强。

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