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首页> 外文期刊>Oncology reports >Entropy of Feulgen-stained 17-beta-estradiol-transformed human breast epithelial cells as assessed by restriction enzymes and image analysis.
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Entropy of Feulgen-stained 17-beta-estradiol-transformed human breast epithelial cells as assessed by restriction enzymes and image analysis.

机译:通过限制性内切酶和图像分析评估Feulgen染色的17-β-雌二醇转化的人乳房上皮细胞的熵。

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MCF-10F human breast epithelial cells when transformed with 17-beta-estradiol (E2) give rise to highly invasive C5 cells that generate adenocarcinomas in SCID mice. From these tumors, cell lines such as C5-A6-T6 and C5-A8-T8 have been derived. Variable patterns of chromatin supraorganization have been demonstrated for these cells during the transformation/tumorigenesis progress, when assessing chromatin entropy by image analysis in Feulgen-stained preparations. Since epigenetic dysregulation might contribute to the chromatin textural repatterning in transformed MCF-10F cells, the association of the variable chromatin packing states with global DNA methylation was investigated in these cells after their treatment with restriction enzymes followed by Feulgen staining and chromatin entropy evaluation by image analysis. The results indicate that although -CmCGG- sequences may affect chromatin supraorganization in some of the analyzed cell types (perhaps due to localized hypermethylation), not all the chromatin condensation patterns in these cells with transformation and/or tumorigenesis are associated with DNA methylation (e.g. E2 cells). Chromatin supraorganization remodeling in C5-A6-T6 and C5-A8-T8 cells may be attained by different mechanisms, with C5-A6-T6 chromatin packing states perhaps being associated with local DNA hypermethylation or other epigenetic factors, and C5-A8-T8 likely being associated with global DNA hypomethylation, as reported in the literature for other cell types. Thus, we assume that a variable epigenetic modulation affecting the higher-order packing states of chromatin in the estrogen-transformed MCF-10F cell model could be evident with the chromatin entropy study by image analysis.
机译:MCF-10F人乳腺上皮细胞经17-β-雌二醇(E2)转化后,会产生高侵袭性C5细胞,从而在SCID小鼠中产生腺癌。从这些肿瘤中,已经获得了细胞系例如C5-A6-T6和C5-A8-T8。当通过Feulgen染色制剂中的图像分析评估染色质熵时,已经证明了这些细胞在转化/肿瘤发生过程中染色质超组织的可变模式。由于表观遗传失调可能会导致转化的MCF-10F细胞染色质重新构筑,因此在这些细胞中用限制性内切酶处理后进行了染色质堆积状态与整体DNA甲基化的关联,然后进行了Feulgen染色和图像的染色质熵评估分析。结果表明,尽管-CmCGG-序列可能会影响某些分析细胞类型的染色质超组织化(可能是由于局部超甲基化所致),但并非这些细胞中所有具有转化和/或致瘤性的染色质浓缩模式都与DNA甲基化有关(例如E2细胞)。 C5-A6-T6和C5-A8-T8细胞中的染色质超组织重塑可以通过不同的机制来实现,其中C5-A6-T6染色质堆积状态可能与局部DNA高甲基化或其他表观遗传因素有关,而C5-A8-T8正如其他细胞类型的文献报道的那样,可能与总体DNA甲基化不足有关。因此,我们假设通过图像分析的染色质熵研究,可以影响在雌激素转化的MCF-10F细胞模型中染色质高阶堆积状态的可变表观遗传调制。

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