» Articles » PMID: 16854970

Proper Patterning of the Optic Fissure Requires the Sequential Activity of BMP7 and SHH

Overview
Journal Development
Specialty Biology
Date 2006 Jul 21
PMID 16854970
Citations 70
Authors
Affiliations
Soon will be listed here.
Abstract

The optic disc develops at the interface between optic stalk and retina, and enables both the exit of visual fibres and the entrance of mesenchymal cells that will form the hyaloid artery. In spite of the importance of the optic disc for eye function, little is known about the mechanisms that control its development. Here, we show that in mouse embryos, retinal fissure precursors can be recognised by the expression of netrin 1 and the overlapping distribution of both optic stalk (Pax2, Vax1) and ventral neural retina markers (Vax2, Raldh3). We also show that in the absence of Bmp7, fissure formation is not initiated. This absence is associated with a reduced cell proliferation and apoptosis in the proximoventral quadrant of the optic cup, lack of the hyaloid artery, optic nerve aplasia, and intra-retinal misrouting of RGC axons. BMP7 addition to organotypic cultures of optic vesicles from Bmp7-/- embryos rescues Pax2 expression in the ventral region, while follistatin, a BMP7 antagonist, prevents it in early, but not in late, optic vesicle cultures from wild-type embryos. The presence of Pax2-positive cells in late optic cup is instead abolished by interfering with Shh signalling. Furthermore, SHH addition re-establishes Pax2 expression in late optic cups derived from ocular retardation (or) embryos, where optic disc development is impaired owing to the near absence of SHH-producing RGC. Collectively, these data indicate that BMP7 is required for retinal fissure formation and that its activity is needed, before SHH signalling, for the generation of PAX2-positive cells at the optic disc.

Citing Articles

Signaling - transcription interactions in mouse retinal ganglion cells early axon pathfinding -a literature review.

Pascalau R, Badea T Front Ophthalmol (Lausanne). 2024; 3:1180142.

PMID: 38983012 PMC: 11182120. DOI: 10.3389/fopht.2023.1180142.


Notch pathway mutants do not equivalently perturb mouse embryonic retinal development.

Bosze B, Suarez-Navarro J, Cajias I, Brzezinski Iv J, Brown N PLoS Genet. 2023; 19(9):e1010928.

PMID: 37751417 PMC: 10522021. DOI: 10.1371/journal.pgen.1010928.


Self-formation of concentric zones of telencephalic and ocular tissues and directional retinal ganglion cell axons.

Liu W, Shrestha R, Lowe A, Zhang X, Spaeth L Elife. 2023; 12.

PMID: 37665325 PMC: 10476969. DOI: 10.7554/eLife.87306.


Molecular mechanisms controlling vertebrate retinal patterning, neurogenesis, and cell fate specification.

Zhang X, Leavey P, Appel H, Makrides N, Blackshaw S Trends Genet. 2023; 39(10):736-757.

PMID: 37423870 PMC: 10529299. DOI: 10.1016/j.tig.2023.06.002.


Self-formation of concentric zones of telencephalic and ocular tissues and directional retinal ganglion cell axons.

Liu W, Shrestha R, Lowe A, Zhang X, Spaeth L bioRxiv. 2023; .

PMID: 36993285 PMC: 10055356. DOI: 10.1101/2023.03.22.533827.