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Odame, E.

Publications and source records attributed to Odame, E..

2 recordsLinked to original sources

C1q limits cystoid edema by maintaining basal beta-catenin-dependent signaling and blood-retina barrier function

Macular edema (ME) causes significant vision impairment and occurs in several prevalent retinal diseases including diabetic retinopathy (DR), choroidal neovascularization (CNV), retinal vein occlusion, and uveitis. Retinal edema typically results from dysfunction of the blood-retina barrier (BRB), which is associated with increased retinal expression of complement components. It is unclear whether the classical complement pathway has detrimental or protective roles in the context of BRB dysfunction. Here, we characterize Tspan12 KODBM (Disrupted Barrier Maintenance) mice, a new mouse model of cystoid edema based on genetically and pharmacologically manipulating beta-catenin-dependent norrin/frizzled4 (FZD4) signaling. We assess BRB function, cystoid edema, ERG, and microglia activation outcomes in an aging study with WT, C1qa KO, Tspan12 KODBM, and Tspan12 KODBM; C1qa KO compound mutant mice. Phenotypic analyses and cell-based experiments indicate that C1QA contributes to maintaining basal beta-catenin-dependent signaling and that the absence of C1QA exacerbates BRB dysfunction, cystoid edema, and neuroinflammation in Tspan12 KODBM; C1qa compound mutant mice. Activation of beta-catenin-dependent signaling by a FZD4/LRP5 agonist antibody modality achieves complete resolution of cystoid edema. This study shows that reducing or enhancing norrin/frizzled4 signaling can increase or decrease cystoid edema, respectively, underscoring its potential as a therapeutic target in ME. Furthermore, this study provides novel insights into the contribution of C1QA to BRB maintenance.

neuroscience↗

The Calcium Pump ATP2B1/PMCA1 Regulates CNS Vascular Development by Facilitating Norrin- and WNT7A/B-induced Frizzled4 signaling

Frizzled4 (FZD4) is a receptor for Norrin and WNT7A/B ligands, is expressed in endothelial cells (ECs), is required for endothelial blood-central nervous system (CNS) barrier function as well as CNS angiogenesis, and transduces {beta}-catenin-dependent signaling. Despite its fundamental importance in neurovascular biology, including as a drug target, the molecular mechanisms governing FZD4 regulation remain poorly understood. Here, we employed proximity biotinylation to identify proteins that regulate FZD4. We identified ATPase Plasma Membrane Ca{superscript 2} Transporting 1 (ATP2B1, also known as PMCA1) as a FZD4 proximity interactor. Functional analyses revealed that ATP2B1 depletion increased EC Ca2+, activated NFAT, and significantly attenuated Norrin/Frizzled4 signaling. Endothelial-specific Atp2b1 deletion caused CNS vascular phenotypes consistent with compromised Norrin/Frizzled4 signaling. This study identifies ATP2B1 as a novel regulator of Norrin- and WNT7A/B-induced FZD4 signaling and suggests that in pathological contexts with elevated EC Ca2+-levels, EC function may be modulated by suppression of {beta}-catenin-dependent signaling.

developmental biology↗