ROR2 homodimerization is sufficient to activate a neuronal Wnt/calcium signaling pathway

Wnt信号通路 细胞生物学 化学 信号转导 钙信号传导 生物 有机化学
作者
Raúl Riquelme,Laura Li,Abigail C. Gambrill,Andrés Barría
出处
期刊:Journal of Biological Chemistry [Elsevier]
卷期号:299 (11): 105350-105350 被引量:2
标识
DOI:10.1016/j.jbc.2023.105350
摘要

Wnt signaling plays a key role in the mature CNS by regulating trafficking of NMDA-type glutamate receptors and intrinsic properties of neurons. The Wnt receptor ROR2 has been identified as a necessary component of the neuronal Wnt5a/Ca2+ signaling pathway that regulates synaptic and neuronal function. Since ROR2 is considered a pseudokinase, its mechanism for downstream signaling upon ligand binding has been controversial. It has been suggested that its role is to function as a co-receptor of a G-protein coupled Wnt receptor of the Frizzled family.We show that chemically induced homodimerization of ROR2 is sufficient to recapitulate key signaling events downstream of receptor activation in neurons, including PKC and JNK kinases activation, elevation of somatic and dendritic Ca2+ levels, and increased trafficking of NMDARs to synapses. In addition, we show that homodimerization of ROR2 induces phosphorylation of the receptor on Tyr residues. Point mutations in the conserved but presumed non-functional ATP-binding site of the receptor prevent its phosphorylation, as well as downstream signaling. This suggests an active kinase domain.Our results indicate that ROR2 can signal independently of Frizzled receptors to regulate the trafficking of a key synaptic component. Additionally, they suggest that homodimerization can overcome structural conformations that render the tyrosine kinase inactive. A better understanding of ROR2 signaling is crucial for comprehending the regulation of synaptic and neuronal function in normal brain processes in mature animals.

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