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Brunken, W. J.

Publications and source records attributed to Brunken, W. J..

2 recordsLinked to original sources

Tbx3 is required for mammalian retinal angiogenesis.

PurposeIn Retinopathy of Prematurity (ROP), infants often have incomplete vascularization, affecting the temporal region. A factor expressed in this region during retinal development is the T-box factor, Tbx3, which has not been studied in the mammalian eye. The purpose of this study was to determine if Tbx3 is required during eye formation for retinal angiogenesis. MethodsConditional removal of Tbx3 from both retinal progenitors and astrocytes was done using the optic cup-Cre recombinase driver, BAC-Dkk3-CRE and analyzed using standard immunohistochemical techniques. ResultsWith Tbx3 loss, the retinas were hypovascular, as seen in patients with ROP and Familial Exudative Vitreoretinopathy (FEVR). Retinal vasculature failed to form the stereotypic tri-layered plexus in the dorsal-temporal region. Astrocyte precursors were reduced in number and failed to form a lattice at the dorsal-temporal edge. We next examined retinal ganglion cells, as they have been shown to play a critical role in retinal angiogenesis. We found that melanopsin expression and Islet1/2-positive retinal ganglion cells were reduced in the dorsal half of the retina. In previous studies, loss of melanopsin has been linked to hyaloid artery persistence, which we also observed in the Tbx3 cKO retina, as well as in infants with ROP or FEVR. ConclusionsTogether, these results show that TBX3 is required for normal mammalian eye formation for the first time. This potentially provides a new genetic model for retinal hypovascular diseases.

neuroscience↗

Mural norrin/β-catenin signaling regulates Lama2 expression to promote neurovascular unit assembly

Neurovascular unit (NVU) assembly and barrier maturation rely on vascular basement membrane (vBM) composition. Laminins, a major vBM component, are critical for these processes, yet which signaling pathway(s) regulate their expression remains unknown. Here we show that mural cells have active Norrin/{beta}-catenin signaling during central nervous system development. Bulk RNA sequencing and validation using P10 and P14 wild-type versus Apcdd1-/- retinas reveal that Lama2 (Laminin-2 chain) mRNA and protein levels are increased in mutant vasculature undergoing higher Norrin/{beta}-catenin signaling. Mural cells are the main source of Lama2, and {beta}-catenin activation induces Lama2 expression in mural cells in vitro. Markers of mature astrocytes including Aquaporin-4 (a water channel in astrocyte endfeet) and Integrin-6 (a laminin receptor) are upregulated in Apcdd1-/- retinas following higher Lama2 vBM deposition. Thus, the Norrin/{beta}-catenin pathway regulates Lama2 expression in mural cells to promote NVU assembly and neurovascular barrier maturation. SUMMARYBiswas et al., demonstrate that Norrin/{beta}-catenin signaling is active in CNS mural cells and regulates Lama2 deposition in the vascular basement membrane, promoting neurovascular unit assembly and blood-CNS barrier maturation.

developmental biology↗