Stoddart J H, Lane M A, Niles R M
Biochemistry Department, Boston University School of Medicine, Massachusetts 02118.
Exp Cell Res. 1989 Sep;184(1):16-27. doi: 10.1016/0014-4827(89)90359-5.
The transforming activity of DNA from a newly established undifferentiated human colon carcinoma cell line (MIP-101) was tested in the NIH-3T3 transfection assay. Southern blot analysis of the transfectant DNA revealed the presence of a human N-ras oncogene. Treatment of MIP-101 cells with the maturational agent sodium butyrate induced a more normal phenotype, including diminished growth rate, elimination of anchorage independent growth, and decreased tumorigenicity (R. Niles, S. Wilhelm, P. Thomas, and N. Zamcheck (1988) J. Cancer Invest. 6, 39). Here we report that there is a significant reduction in the transforming efficiency of the DNA from butyrate-treated MIP-101 cells. A nonspecific reduction in total DNA uptake as an explanation for these findings was eliminated by showing that there was similar uptake and expression of the thymidine kinase gene from the DNA of butyrate-treated and control MIP cells. Butyrate treatment had no detectable effect on the overall structure, methylation, and level of expression of the human N-ras gene from MIP-101 cells. An NIH-3T3 transformant ability after treatment with sodium butyrate. Although butyrate suppressed several transformed properties similar to MIP-101 cells, DNA from control and treated cultures had an identical level of transforming activity. The results suggest that the environment of the MIP cells may contain additional elements not present in the NIH-3T3 transformants which are required to observe the effect of butyrate on reduction of transforming activity.
在NIH-3T3转染试验中检测了来自新建立的未分化人结肠癌细胞系(MIP-101)的DNA的转化活性。对转染子DNA进行的Southern印迹分析显示存在人N-ras癌基因。用成熟剂丁酸钠处理MIP-101细胞可诱导更正常的表型,包括生长速率降低、消除不依赖贴壁生长以及致瘤性降低(R. 奈尔斯、S. 威廉、P. 托马斯和N. 赞切克(1988年)《癌症研究杂志》6,39)。在此我们报告,丁酸钠处理的MIP-101细胞的DNA的转化效率有显著降低。通过显示丁酸钠处理的MIP细胞和对照MIP细胞的DNA对胸苷激酶基因有相似的摄取和表达,排除了总DNA摄取的非特异性降低作为这些发现的解释。丁酸钠处理对MIP-101细胞的人N-ras基因的整体结构、甲基化和表达水平没有可检测到的影响。丁酸钠处理后NIH-3T3的转化能力。尽管丁酸钠抑制了与MIP-101细胞相似的几种转化特性,但对照培养物和处理培养物的DNA具有相同水平的转化活性。结果表明,MIP细胞的环境可能含有NIH-3T3转化子中不存在的其他元素,而要观察丁酸钠对转化活性降低的作用则需要这些元素。