Hernando Eva, Nahlé Zaher, Juan Gloria, Diaz-Rodriguez Elena, Alaminos Miguel, Hemann Michael, Michel Loren, Mittal Vivek, Gerald William, Benezra Robert, Lowe Scott W, Cordon-Cardo Carlos
Department of Pathology, Memorial Sloan-Kettering Cancer Center New York, New York 10021, USA.
Nature. 2004 Aug 12;430(7001):797-802. doi: 10.1038/nature02820.
Advanced human cancers are invariably aneuploid, in that they harbour cells with abnormal chromosome numbers. However, the molecular defects underlying this trait, and whether they are a cause or a consequence of the malignant phenotype, are not clear. Mutations that disable the retinoblastoma (Rb) pathway are also common in human cancers. These mutations promote tumour development by deregulating the E2F family of transcription factors leading to uncontrolled cell cycle progression. We show that the mitotic checkpoint protein Mad2 is a direct E2F target and, as a consequence, is aberrantly expressed in cells with Rb pathway defects. Concordantly, Mad2 is overexpressed in several tumour types, where it correlates with high E2F activity and poor patient prognosis. Generation of Rb pathway lesions in normal and transformed cells produces aberrant Mad2 expression and mitotic defects leading to aneuploidy, such that elevated Mad2 contributes directly to these defects. These results demonstrate how chromosome instability can arise as a by-product of defects in cell cycle control that compromise the accuracy of mitosis, and suggest a new model to explain the frequent appearance of aneuploidy in human cancer.
晚期人类癌症总是非整倍体的,因为它们含有染色体数目异常的细胞。然而,这种特征背后的分子缺陷,以及它们是恶性表型的原因还是结果,尚不清楚。使视网膜母细胞瘤(Rb)通路失活的突变在人类癌症中也很常见。这些突变通过解除对转录因子E2F家族的调控来促进肿瘤发展,导致细胞周期失控进展。我们发现有丝分裂检查点蛋白Mad2是E2F的直接靶点,因此在具有Rb通路缺陷的细胞中异常表达。相应地,Mad2在几种肿瘤类型中过表达,在这些肿瘤中它与高E2F活性和患者预后不良相关。在正常细胞和转化细胞中产生Rb通路损伤会导致Mad2异常表达和有丝分裂缺陷,进而导致非整倍体,因此Mad2水平升高直接导致了这些缺陷。这些结果证明了染色体不稳定性是如何作为细胞周期控制缺陷的副产品出现的,这种缺陷损害了有丝分裂的准确性,并提出了一个新模型来解释人类癌症中频繁出现的非整倍体现象。