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PMID: 15306814 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Rb inactivation promotes genomic instability by uncoupling cell cycle progression from mitotic control.

Nature ·Vol. 430 ·No. 7001 ·2004-08-12 ·Pages 797-802

Hernando E, Nahlé Z, Juan G, Diaz-Rodriguez E, Alaminos M, Hemann M, Michel L, Mittal V, Gerald W, Benezra R, Lowe SW, Cordon-Cardo C

Abstract

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.

MeSH Terms
Aneuploidy Animals Carrier Proteins/genetics,metabolism Cell Cycle/physiology Cell Cycle Proteins Cell Line Cell Line, Tumor Chromosomes, Human DNA-Binding Proteins/metabolism E2F Transcription Factors Gene Expression Regulation, Neoplastic Genomic Instability/genetics Humans Immunohistochemistry In Situ Hybridization, Fluorescence Karyotyping Mad2 Proteins Mice Mitosis/physiology Mutation/genetics Nuclear Proteins RNA, Messenger/genetics,metabolism Retinoblastoma Protein/genetics,metabolism Signal Transduction Substrate Specificity Transcription Factors/metabolism
Chemicals
Carrier Proteins Cell Cycle Proteins DNA-Binding Proteins E2F Transcription Factors Mad2 Proteins Mad2l1 protein, mouse Mad2l2 protein, mouse Nuclear Proteins RNA, Messenger Retinoblastoma Protein Transcription Factors
Authors & Affiliations
12 authors, click to expand affiliations / ORCID
Hernando Eva
Department of Pathology, Memorial Sloan-Kettering Cancer Center New York, New York 10021, USA.
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
Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2004-08-12
Pages
797-802
Language
English
Region
England
NLM ID
0410462
Subset
IM
Grants
NCI NIH HHS · P30 CA008748 · United States
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