Acute mutation of retinoblastoma gene function is sufficient for cell cycle re-entry

J Sage, AL Miller, PA Pérez-Mancera, JM Wysocki… - Nature, 2003 - nature.com
J Sage, AL Miller, PA Pérez-Mancera, JM Wysocki, T Jacks
Nature, 2003nature.com
Cancer cells arise from normal cells through the acquisition of a series of mutations in
oncogenes and tumour suppressor genes. Mouse models of human cancer often rely on
germline alterations that activate or inactivate genes of interest. One limitation of this
approach is that germline mutations might have effects other than somatic mutations, owing
to developmental compensation,. To model sporadic cancers associated with inactivation of
the retinoblastoma (RB) tumour suppressor gene in humans, we have produced a …
Abstract
Cancer cells arise from normal cells through the acquisition of a series of mutations in oncogenes and tumour suppressor genes. Mouse models of human cancer often rely on germline alterations that activate or inactivate genes of interest. One limitation of this approach is that germline mutations might have effects other than somatic mutations, owing to developmental compensation,. To model sporadic cancers associated with inactivation of the retinoblastoma (RB) tumour suppressor gene in humans, we have produced a conditional allele of the mouse Rb gene. We show here that acute loss of Rb in primary quiescent cells is sufficient for cell cycle entry and has phenotypic consequences different from germline loss of Rb function. This difference is explained in part by functional compensation by the Rb-related gene p107. We also show that acute loss of Rb in senescent cells leads to reversal of the cellular senescence programme. Thus, the use of conditional knockout strategies might refine our understanding of gene function and help to model human cancer more accurately.
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