Darwanto Agus, Kitazawa Riko, Maeda Sakan, Kitazawa Sohei
Division of Molecular Pathology, Department of Biomedical Informatics, Kobe University Graduate School of Medicine, Chuo-ku, Kobe 650-0017, Japan.
Cancer Sci. 2003 May;94(5):442-7. doi: 10.1111/j.1349-7006.2003.tb01462.x.
Reduced expression of E-cadherin (E-cad) owing to aberrant 5'CpG island hypermethylation has been regarded as one of the main molecular events involved in the dysfunction of the cell-cell adhesion system. The molecular mechanisms providing diversity and heterogeneity of E-cad expression in colorectal carcinoma were explored. In 29 cases of colorectal carcinoma in Indonesia, the expression of E-cad was analyzed by immunohistochemical staining, the methylation status of the E-cad promoter was determined by methylation-specific PCR, and the expression of methyl-CpG-binding protein (MeCP) 2 was studied by in situ hybridization. E-cad expression was strong, and no methylation was observed in normal colon mucosa and most of the well-differentiated adenocarcinoma. In contrast, both signet-ring cell carcinoma and mucinous adenocarcinoma showed fully methylated patterns and strong MeCP2 expression. In moderately- and poorly-differentiated adenocarcinomas, however, E-cad expression was rather heterogeneous, especially at the front of invasion and in the dissociated areas, where loss of MeCP2 expression correlated with E-cad reexpression even in the presence of E-cad promoter methylation. We conclude that both CpG methylation of the E-cad promoter and significant MeCP2 expression cooperatively and epigenetically regulate E-cad expression in colorectal cancer.
由于异常的5'CpG岛高甲基化导致E-钙黏蛋白(E-cad)表达降低,这被认为是细胞间黏附系统功能障碍所涉及的主要分子事件之一。本研究探讨了在结直肠癌中导致E-cad表达具有多样性和异质性的分子机制。在印度尼西亚的29例结直肠癌病例中,通过免疫组织化学染色分析E-cad的表达,通过甲基化特异性PCR确定E-cad启动子的甲基化状态,并通过原位杂交研究甲基化CpG结合蛋白(MeCP)2的表达。在正常结肠黏膜和大多数高分化腺癌中,E-cad表达较强,未观察到甲基化。相比之下,印戒细胞癌和黏液腺癌均呈现完全甲基化模式且MeCP2表达较强。然而,在中分化和低分化腺癌中,E-cad表达相当异质,尤其是在侵袭前沿和分离区域,即使在E-cad启动子甲基化的情况下,MeCP2表达缺失也与E-cad重新表达相关。我们得出结论,E-cad启动子的CpG甲基化和显著的MeCP2表达在结直肠癌中协同并通过表观遗传方式调节E-cad的表达。