Cajone F, Debiasi S, Parker C, Lakshmi M S, Sherbet G V
Cancer Research Unit, University of Newcastle upon Tyne, Medical School, UK.
Melanoma Res. 1994 Jun;4(3):143-50. doi: 10.1097/00008390-199406000-00001.
Tumour cells are more heat sensitive than corresponding normal cells but the reasons for this are poorly understood. Here we report that induction of heat shock proteins was associated with a down-regulation of the metastasis associated mts1 gene in BL6-B16 murine melanoma cells, and the heat-resistant HTG variant of the BL6 line. Melanocyte stimulating hormone, which does not affect B16 cell proliferation but upregulates mts1 expression, only marginally enhanced heat shock protein expression in F1 cells as determined by immunohistochemical methods. Retinoic acid, which inhibits cell proliferation and down-regulates the mts1 gene, reduced heat shock protein expression in the ML8-B16 variant line. This suggests that the changes in the heat shock protein expression reported here may be cell proliferation related. Heat shock proteins are known to stabilize microtubules, whereas mts1 has been implicated in their depolymerization. Taxol, which stabilizes microtubules and arrests cells at the G1 phase of the cell cycle, down-regulated mts1 gene expression in both F1 and ML8 lines. Taxol also reduced heat shock protein expression in ML8 cells. These data suggest opposing functions of heat shock proteins and the mts1 gene in microtubule polymerization, and may provide a rationale for the use of hyperthermia as a treatment for tumours.
肿瘤细胞比相应的正常细胞对热更敏感,但其原因尚不清楚。在此我们报告,在BL6 - B16小鼠黑色素瘤细胞以及BL6细胞系的耐热HTG变体中,热休克蛋白的诱导与转移相关的mts1基因的下调有关。促黑素细胞激素不影响B16细胞增殖,但会上调mts1表达,通过免疫组织化学方法测定,其仅略微增强了F1细胞中的热休克蛋白表达。视黄酸可抑制细胞增殖并下调mts1基因,在ML8 - B16变体细胞系中降低了热休克蛋白表达。这表明此处报道的热休克蛋白表达变化可能与细胞增殖有关。已知热休克蛋白可稳定微管,而mts1则与微管解聚有关。紫杉醇可稳定微管并使细胞停滞在细胞周期的G1期,在F1和ML8细胞系中均下调了mts1基因表达。紫杉醇还降低了ML8细胞中的热休克蛋白表达。这些数据表明热休克蛋白和mts1基因在微管聚合中具有相反的功能,并且可能为使用热疗治疗肿瘤提供理论依据。