GIPC proteins negatively modulate Plexind1 signaling during vascular development.

Carretero-Ortega, Jorge; Chhangawala, Zinal; Hunt, Shane; Narvaez, Carlos; Menéndez-González, Javier; Gay, Carl M; Zygmunt, Tomasz; Li, Xiaochun et al. · Elife · 2019

basic_science · Level V

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Abstract

Semaphorins (SEMAs) and their Plexin (PLXN) receptors are central regulators of metazoan cellular communication. SEMA-PLXND1 signaling plays important roles in cardiovascular, nervous, and immune system development, and cancer biology. However, little is known about the molecular mechanisms that modulate SEMA-PLXND1 signaling. As PLXND1 associates with GIPC family endocytic adaptors, we evaluated the requirement for the molecular determinants of their association and PLXND1's vascular role. Zebrafish that endogenously express a Plxnd1 receptor with a predicted impairment in GIPC binding exhibit low penetrance angiogenesis deficits and antiangiogenic drug hypersensitivity. Moreover, <i>gipc</i> mutant fish show angiogenic impairments that are ameliorated by reducing Plxnd1 signaling. Finally, <i>GIPC</i> depletion potentiates SEMA-PLXND1 signaling in cultured endothelial cells. These findings expand the vascular roles of GIPCs beyond those of the Vascular Endothelial Growth Factor (VEGF)-dependent, proangiogenic GIPC1-Neuropilin 1 complex, recasting GIPCs as negative modulators of antiangiogenic PLXND1 signaling and suggest that PLXND1 trafficking shapes vascular development.

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