Rb regulates proliferation and rod photoreceptor development in the mouse retina

J Zhang, J Gray, L Wu, G Leone, S Rowan, CL Cepko… - Nature …, 2004 - nature.com
J Zhang, J Gray, L Wu, G Leone, S Rowan, CL Cepko, X Zhu, CM Craft, MA Dyer
Nature genetics, 2004nature.com
The retinoblastoma protein (Rb) regulates proliferation, cell fate specification and
differentiation in the developing central nervous system (CNS), but the role of Rb in the
developing mouse retina has not been studied, because Rb-deficient embryos die before
the retinas are fully formed. We combined several genetic approaches to explore the role of
Rb in the mouse retina. During postnatal development, Rb is expressed in proliferating
retinal progenitor cells and differentiating rod photoreceptors. In the absence of Rb …
Abstract
The retinoblastoma protein (Rb) regulates proliferation, cell fate specification and differentiation in the developing central nervous system (CNS), but the role of Rb in the developing mouse retina has not been studied, because Rb-deficient embryos die before the retinas are fully formed. We combined several genetic approaches to explore the role of Rb in the mouse retina. During postnatal development, Rb is expressed in proliferating retinal progenitor cells and differentiating rod photoreceptors. In the absence of Rb, progenitor cells continue to divide, and rods do not mature. To determine whether Rb functions in these processes in a cell-autonomous manner, we used a replication-incompetent retrovirus encoding Cre recombinase to inactivate the Rb1lox allele in individual retinal progenitor cells in vivo. Combined with data from studies of conditional inactivation of Rb1 using a combination of Cre transgenic mouse lines, these results show that Rb is required in a cell-autonomous manner for appropriate exit from the cell cycle of retinal progenitor cells and for rod development.
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