Rass K, Gutwein P, Welter C, Meineke V, Tilgen W, Reichrath J
Department of Dermatology, The Saarland University Hospital, Homburg/Saar, Germany.
Histochem J. 2001 Aug;33(8):459-67. doi: 10.1023/a:1014472314354.
Mutations in the mismatch DNA repair gene human MutS homologen 2 (hMSH2) are causative for microsatellite instability and carcinogenesis in various human tumours, including hereditary nonpolyposis colorectal cancer. Because microsatellite instability has been detected in malignant melanoma, we have investigated hMSH2 in melanocytic tumours. We found strong nuclear immunoreactivity for hMSH2 that was elevated in malignant melanoma and melanoma metastases as compared to acquired nevi. These findings suggest that increased genomic instability in malignant melanoma is associated with elevated protein levels of this DNA repair enzyme. hMSH2 is not exclusively regulated by proliferative activity in melanocytes, because there was no correlation between staining patterns of hMSH2 and the proliferation marker Ki-67. In contrast, immunoreactivity scores for hMSH2 and p53 were both upregulated in malignant melanocytic tumours. These findings support the concept that hMSH2 gene expression may be regulated in melanocytes by the p53 protein, as has been reported previously in other tissues. Using the reverse transcription-polymerase chain reaction, we detected strong hMSH2 mRNA expression in each of 8 melanoma cell lines analysed (highest amounts in SK-MEL-25 cells, lowest amounts in MML-I cells). In conclusion, our findings indicate that hMSH-2 may be of importance for genetic stability, tumorigenesis and progression of malignant melanoma.
错配DNA修复基因人MutS同源物2(hMSH2)的突变是多种人类肿瘤(包括遗传性非息肉病性结直肠癌)中微卫星不稳定性和致癌作用的病因。由于在恶性黑色素瘤中已检测到微卫星不稳定性,我们对黑素细胞肿瘤中的hMSH2进行了研究。我们发现hMSH2具有强烈的核免疫反应性,与获得性痣相比,在恶性黑色素瘤和黑色素瘤转移灶中其水平升高。这些发现表明,恶性黑色素瘤中基因组不稳定性的增加与这种DNA修复酶的蛋白质水平升高有关。hMSH2并非仅由黑素细胞的增殖活性调节,因为hMSH2的染色模式与增殖标志物Ki-67之间没有相关性。相反,hMSH2和p53的免疫反应性评分在恶性黑素细胞肿瘤中均上调。这些发现支持了hMSH2基因表达可能在黑素细胞中由p53蛋白调节的概念,正如先前在其他组织中所报道的那样。使用逆转录-聚合酶链反应,我们在分析的8种黑色素瘤细胞系中的每一种中都检测到了强烈的hMSH2 mRNA表达(SK-MEL-25细胞中表达量最高,MML-I细胞中表达量最低)。总之,我们的发现表明hMSH-2可能对恶性黑色素瘤的遗传稳定性、肿瘤发生和进展具有重要意义。