4.8 Article

Arf-dependent regulation of Pdgf signaling in perivascular cells in the developing mouse eye

Journal

EMBO JOURNAL
Volume 24, Issue 15, Pages 2803-2814

Publisher

WILEY
DOI: 10.1038/sj.emboj.7600751

Keywords

eye development; p19(Arf); pericytes; platelet-derived growth factor; tumor suppressor gene

Funding

  1. NEI NIH HHS [R01 EY014368, R01 EY014368-02] Funding Source: Medline

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We have established that the Arf tumor suppressor gene regulates mural cell biology in the hyaloid vascular system (HVS) of the developing eye. In the absence of Arf, perivascular cells accumulate within the HVS and prevent its involution. We now demonstrate that mural cell accumulation evident at embryonic day (E) 13.5 in Arf-(/-) mice was driven by excess proliferation at E12.5, when Arf expression was detectable in vitreous pericyte-like cells. Their expression of Arf overlapped with Pdgf receptor beta (Pdgfr beta), which is essential for pericyte accumulation in the mouse. In cultured cells, p19(Arf) decreased Pdgfr beta and blocked Pdgf-B-driven proliferation independently of Mdm2 and p53. The presence of a normal Arf allele correlated with decreased Pdgfrb in the embryonic vitreous. Pdgfrb was required for vitreous cell accumulation in the absence of Arf. Our findings demonstrate a novel, p53- and Mdm2-independent function for p19(Arf). Instead of solely sensing excessive mitogenic stimuli, developmental cues induce Arf to block Pdgfr beta-dependent signals and prevent the accumulation of perivascular cells selectively in a vascular bed destined to regress.

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