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Biology subjects

Alamo, K. A. E.

Publications and source records attributed to Alamo, K. A. E..

2 recordsLinked to original sources

Structural basis for regulation of Frizzled-4 signaling by the co-receptor Tetraspanin-12

Norrin is an atypical ligand that regulates retinal angiogenesis through the Wnt/{beta}-catenin pathway. Norrin triggers heterodimerization of Frizzled-4 (FZD4) with Low-density lipoprotein receptor-related protein 5 or 6 (LRP5/6), leading to downstream {beta}-catenin stabilization. Unlike Wnt ligands, Norrin requires the tetraspanin Tspan12 for signaling amplification, but it is not understood why. Here, we report a 3.4-angstrom structure of Tspan12 in complex with FZD4 determined by cryo-electron microscopy. The structure reveals that FZD4 and Tspan12 form a direct complex in the absence of Norrin. The transmembrane (TM) domain of Tspan12 is oriented in a tightly packed four-helix bundle and interacts with TM2 of FZD4 to promote trafficking of Tspan12 to the cell surface. The C-D helices of Tspan12, which mediate binding to Norrin, remain exposed while Tspan12 is in complex with FZD4, facilitating higher-affinity Norrin binding. Cell-based assays reveal that Tspan12 and FZD4 remain associated after Norrin recognition, suggesting that Tspan12 is a core component of the FZD4-Norrin-LRP5/6 signaling complex. Together, these studies reveal the molecular mechanism underlying the assembly of the Tspan12-FZD4 complex and the enhancement of Norrin signaling, suggesting new ways to target the FZD4-Tspan12 complex for ocular diseases characterized by hypo- or hyper-vascularization. SIGNIFICANCE STATEMENTBlood vessel formation in the retina is essential for vision, and its disruption leads to ocular diseases. Norrin regulates retinal angiogenesis by triggering the heterodimerization of Frizzled-4 with co-receptor LRP5/6, mimicking the function of Wnt ligands and leading to downstream {beta}-catenin signaling. Unlike Wnts, Norrin requires a tetraspanin family member, Tspan12, to amplify signaling. We report the structure of the FZD4-Tspan12 co-receptor complex and identify key interacting regions that enable Tspan12 trafficking to the cell surface and higher affinity capture of Norrin. Cell-based assays indicate Tspan12 remains a component of the active Norrin-FZD4-LRP5/6 signaling complex. Our results highlight an underappreciated role of tetraspanins in direct regulation of receptor signaling and suggest new therapeutic avenues for targeting abnormalities in vascular growth.

biochemistry↗

De Novo Design of Integrin α5β1 Modulating Proteins for Regenerative Medicine

Integrin 5{beta}1 is crucial for cell attachment and migration in development and tissue regeneration, and 5{beta}1 binding proteins could have considerable utility in regenerative medicine and next-generation therapeutics. We use computational protein design to create de novo 5{beta}1-specific modulating miniprotein binders, called NeoNectins, that bind to and stabilize the open state of 5{beta}1. When immobilized onto titanium surfaces and throughout 3D hydrogels, the NeoNectins outperform native fibronectin and RGD peptide in enhancing cell attachment and spreading, and NeoNectin-grafted titanium implants outperformed fibronectin and RGD-grafted implants in animal models in promoting tissue integration and bone growth. NeoNectins should be broadly applicable for tissue engineering and biomedicine. One-Sentence SummaryA de novo-designed fibronectin substitute, NeoNectin, is specific for integrin 5{beta}1 and can be incorporated into biomaterials for regenerative medicine.

bioengineering↗