Matoso Andres, Zhou Zongxiang, Hayama Ryo, Flesken-Nikitin Andrea, Nikitin Alexander Yu
Department of Biomedical Sciences, Cornell University, Ithaca, NY 14853, USA.
Carcinogenesis. 2008 Mar;29(3):620-8. doi: 10.1093/carcin/bgm207. Epub 2007 Sep 24.
Inactivation of multiple endocrine neoplasia (MEN) type 1 gene (Men1) results in development of multiple endocrine tumors in Men1(+/-) mice and in humans. Intriguingly, loss of the wild-type retinoblastoma 1 (Rb) gene also leads to MEN-like phenotype in Rb(+/-) mice. To evaluate potential genetic interactions between these genes, we prepared and characterized Men1(+/-)Rb(+/-) compound mice in parallel with their parental genotypes. Men1 and Rb did not cooperate in tumor suppression, as demonstrated by comparable survival rates of Rb(+/-) and Men1(+/-)Rb(+/-) mice, absence of tumor growth acceleration and lack of novel neoplasms. Notably, the loss of the remaining copy of the wild-type Men1 and Rb was mutually exclusive in all tumors of Men1(+/-)Rb(+/-) mice, including pituitary anterior lobe and adrenal medulla neoplasms shared by Rb- and Men1-deficient phenotypes. Down-regulation of Men1 targets p18 and p27 and increased presence of phosphorylated-Rb were observed in Men1-deficient pheochromocytomas of Men1(+/-)Rb(+/-) and Men1(+/-) mice. At the same time, the RNA interference (RNAi) knock-down of Men1 mRNA resulted in increased apoptosis of Rb-deficient medullary thyroid carcinoma cells. These results demonstrate that, depending on cell lineage context, combined Men1 and Rb deficiency may be either redundant or detrimental to neoplastic growth. Identification of cell lineage-specific interactions between Men1 and Rb may have important implications for development of rationally designed therapeutic approaches.
多发性内分泌肿瘤1型(MEN1)基因(Men1)的失活会导致Men1(+/-)小鼠和人类发生多发性内分泌肿瘤。有趣的是,野生型视网膜母细胞瘤1(Rb)基因的缺失也会导致Rb(+/-)小鼠出现类MEN表型。为了评估这些基因之间潜在的遗传相互作用,我们制备并鉴定了Men1(+/-)Rb(+/-)复合小鼠及其亲本基因型。Men1和Rb在肿瘤抑制方面没有协同作用,这体现在Rb(+/-)和Men1(+/-)Rb(+/-)小鼠的存活率相当、肿瘤生长没有加速以及没有新肿瘤出现。值得注意的是,在Men1(+/-)Rb(+/-)小鼠的所有肿瘤中,包括Rb和Men1缺陷表型共有的垂体前叶和肾上腺髓质肿瘤,野生型Men1和Rb剩余拷贝的缺失是相互排斥的。在Men1(+/-)Rb(+/-)和Men1(+/-)小鼠的Men1缺陷型嗜铬细胞瘤中,观察到Men1靶点p18和p27的下调以及磷酸化Rb的增加。同时,RNA干扰(RNAi)敲低Men1 mRNA导致Rb缺陷型甲状腺髓样癌细胞的凋亡增加。这些结果表明,根据细胞谱系背景,Men1和Rb联合缺陷对肿瘤生长可能是冗余的或有害的。鉴定Men1和Rb之间细胞谱系特异性的相互作用可能对合理设计治疗方法的开发具有重要意义。