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P130Rb2 and p27kip1 cooperate to control mobilization of angiogenic progenitors from the bone marrow.


ABSTRACT: Neoangiogenesis involves both bone marrow-derived myelomonocytic and endothelial progenitor cells as well as endothelial cells coopted from surrounding vessels. Cytokines induce these cells to proliferate, migrate, and exit the cell cycle to establish the vasculature; however, which cell cycle regulators play a role in these processes is largely unknown. Here, we report that mice lacking the cell cycle inhibitors p130 and p27 show defects in tumor neoangiogenesis, both in xenografts and spontaneously arising tumors. This defect is associated with impaired mobilization of endothelial and myelomonocytic angiogenic progenitors from the bone marrow. This article documents the role of these molecules in angiogenesis and further suggests that cell expansion and mobilization from the bone marrow of angiogenic precursors are separable events.

SUBMITTER: Vidal A 

PROVIDER: S-EPMC1088064 | biostudies-literature | 2005 May

REPOSITORIES: biostudies-literature

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p130Rb2 and p27kip1 cooperate to control mobilization of angiogenic progenitors from the bone marrow.

Vidal Anxo A   Zacharoulis Stergios S   Guo Wenjun W   Shaffer David D   Giancotti Filippo F   Bramley Anna H AH   de la Hoz Carmen C   Jensen Kristian K KK   Kato Daniel D   MacDonald Daniel D DD   Knowles Joseph J   Yeh Nancy N   Frohman Lawrence A LA   Rafii Shahin S   Lyden David D   Koff Andrew A  

Proceedings of the National Academy of Sciences of the United States of America 20050502 19


Neoangiogenesis involves both bone marrow-derived myelomonocytic and endothelial progenitor cells as well as endothelial cells coopted from surrounding vessels. Cytokines induce these cells to proliferate, migrate, and exit the cell cycle to establish the vasculature; however, which cell cycle regulators play a role in these processes is largely unknown. Here, we report that mice lacking the cell cycle inhibitors p130 and p27 show defects in tumor neoangiogenesis, both in xenografts and spontane  ...[more]

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