Chin L, Pomerantz J, Polsky D, Jacobson M, Cohen C, Cordon-Cardo C, Horner J W, DePinho R A
Department of Microbiology and Immunology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Genes Dev. 1997 Nov 1;11(21):2822-34. doi: 10.1101/gad.11.21.2822.
The familial melanoma gene (INK4a/MTS1/CDKN2) encodes potent tumor suppressor activity. Although mice null for the ink4a homolog develop a cancer-prone condition, a pathogenetic link to melanoma susceptibility has yet to be established. Here we report that mice with melanocyte-specific expression of activated H-rasG12V on an ink4a-deficient background develop spontaneous cutaneous melanomas after a short latency and with high penetrance. Consistent loss of the wild-type ink4a allele was observed in tumors arising in ink4a heterozygous transgenic mice. No homozygous deletion of the neighboring ink4b gene was detected. Moreover, as in human melanomas, the p53 gene remained in a wild-type configuration with no observed mutation or allelic loss. These results show that loss of ink4a and activation of Ras can cooperate to accelerate the development of melanoma and provide the first in vivo experimental evidence for a causal relationship between ink4a deficiency and the pathogenesis of melanoma. In addition, this mouse model affords a system in which to identify and analyze pathways involved in tumor progression against the backdrop of genetic alterations encountered in human melanomas.
家族性黑色素瘤基因(INK4a/MTS1/CDKN2)编码强大的肿瘤抑制活性。尽管缺失ink4a同源物的小鼠易患癌症,但与黑色素瘤易感性的致病联系尚未确立。在此我们报告,在ink4a缺陷背景下具有激活的H-rasG12V黑色素细胞特异性表达的小鼠在短潜伏期后高频率地自发发生皮肤黑色素瘤。在ink4a杂合转基因小鼠产生的肿瘤中观察到野生型ink4a等位基因持续缺失。未检测到相邻ink4b基因的纯合缺失。此外,与人类黑色素瘤一样,p53基因保持野生型结构,未观察到突变或等位基因缺失。这些结果表明,ink4a缺失和Ras激活可协同加速黑色素瘤的发展,并为ink4a缺陷与黑色素瘤发病机制之间的因果关系提供了首个体内实验证据。此外,该小鼠模型提供了一个系统,可在人类黑色素瘤所遇到的基因改变背景下识别和分析参与肿瘤进展的途径。