Control of axon-axon attraction by Semaphorin reverse signaling

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Abstract

Semaphorin family proteins are well-known axon guidance ligands. Recent studies indicate that certain transmembrane Semaphorins can also function as guidance receptors to mediate axon-axon attraction or repulsion. The mechanisms by which Semaphorin reverse signaling modulates axon-surface affinity, however, remain unknown. In this study, we reveal a novel mechanism underlying upregulation of axon-axon attraction by Semaphorin-1a (Sema1a) reverse signaling in the developing Drosophila visual system. Sema1a promotes the phosphorylation and activation of Moesin (Moe), a member of the ezrin/radixin/moesin family of proteins, and downregulates the level of active Rho1 in photoreceptor axons. We propose that Sema1a reverse signaling activates Moe, which in turn upregulates Fas2-mediated axon-axon attraction by inhibiting Rho1.

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Hsieh, H. H., Chang, W. T., Yu, L., & Rao, Y. (2014). Control of axon-axon attraction by Semaphorin reverse signaling. Proceedings of the National Academy of Sciences of the United States of America, 111(31), 11383–11388. https://doi.org/10.1073/pnas.1321433111

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