Eriksson T, Frisk T, Gray S G, von Schweinitz D, Pietsch T, Larsson C, Sandstedt B, Ekström T J
Laboratory for Molecular Development and Tumor Biology, Experimental Alcohol and Drug Addicition Research Section, Department of Clinical Neuroscience, Karolinska Institutet, CMM, L8:01, Stockholm, S-171 76, Sweden.
Exp Cell Res. 2001 Oct 15;270(1):88-95. doi: 10.1006/excr.2001.5336.
Hepatoblastoma (HB) is a rare malignant embryonal liver tumor. Its pathogenesis has been associated with altered regulation of the IGF2 and H19 genes, and previous studies have suggested a correlation between abnormal methylation and altered expression of these genes in hepatoblastoma. Upregulation of the activity of the IGF2 promoter P3 has previously been shown to be tightly correlated with demethylation in hepatoblastoma. Here, we have used bisulfite genomic sequencing to characterize the methylation pattern of the IGF2 promoter P3 in the hepatoblastoma-derived cell line Hep T1, in the original tumor from which Hep T1 is derived, and in nude mouse xenografts of the Hep T1 cell line. The results show a clear difference in methylation pattern of the most proximal region of the IGF2 P3 promoter between the primary tumor, the cell line, and the xenografts. RNase protection and mRNA in situ hybridization revealed that variations in methylation patterns was paralleled by the levels of IGF2 P3 mRNA, which was detectable in the primary tumor and xenografts, but not in the cell line. Furthermore, it was demonstrated that H19 was reactivated and demethylated in the HepT1 cell line by 5-azaCytidine, in contrast to IGF2 P3, which was not demethylated or reactivated. We suggest that methylation of the proximal IGF2 P3 is important for its regulation.
肝母细胞瘤(HB)是一种罕见的恶性胚胎性肝肿瘤。其发病机制与IGF2和H19基因的调控改变有关,先前的研究表明,肝母细胞瘤中这些基因的异常甲基化与表达改变之间存在相关性。先前已表明,IGF2启动子P3活性的上调与肝母细胞瘤中的去甲基化密切相关。在此,我们使用亚硫酸氢盐基因组测序来表征肝母细胞瘤来源的细胞系Hep T1、Hep T1所源自的原始肿瘤以及Hep T1细胞系的裸鼠异种移植瘤中IGF2启动子P3的甲基化模式。结果显示,原发性肿瘤、细胞系和异种移植瘤之间,IGF2 P3启动子最近端区域的甲基化模式存在明显差异。核糖核酸酶保护和mRNA原位杂交显示,甲基化模式的变化与IGF2 P3 mRNA水平平行,IGF2 P3 mRNA在原发性肿瘤和异种移植瘤中可检测到,但在细胞系中未检测到。此外,与未去甲基化或重新激活的IGF2 P3相反,5-氮杂胞苷使HepT1细胞系中的H19重新激活并去甲基化。我们认为,IGF2 P3近端的甲基化对其调控很重要。