AI Article Synopsis

  • Robo3 is part of the Roundabout receptor family and plays a unique role in axon pathway formation during embryonic development, differing from typical Slit-dependent mechanisms.
  • Researchers developed various Robo3 variants to understand the function of the N-terminal Ig1 domain and its interaction with Slit.
  • The study finds that while Robo3's Ig1 domain is essential for Slit binding and neuronal localization, it can still guide axons independently of Slit, suggesting additional sequences contribute to its guidance capabilities.

Article Abstract

Robo3 is a member of the evolutionarily conserved Roundabout (Robo) receptor family and one of three Robo paralogs. During embryonic ventral nerve cord development, Robo3 does not participate in canonical Slit-dependent midline repulsion, but instead regulates the formation of longitudinal axon pathways at specific positions along the medial-lateral axis. Longitudinal axon guidance by Robo3 is hypothesized to be Slit dependent, but this has not been directly tested. Here we create a series of Robo3 variants in which the N-terminal Ig1 domain is deleted or modified, in order to characterize the functional importance of Ig1 and Slit binding for Robo3's axon guidance activity. We show that Robo3 requires its Ig1 domain for interaction with Slit and for proper axonal localization in embryonic neurons, but deleting Ig1 from Robo3 only partially disrupts longitudinal pathway formation. Robo3 variants with modified Ig1 domains that cannot bind Slit retain proper localization and fully rescue longitudinal axon guidance. Our results indicate that Robo3 guides longitudinal axons independently of Slit, and that sequences both within and outside of Ig1 contribute to this Slit-independent activity.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10197545PMC
http://dx.doi.org/10.1101/2023.05.08.539901DOI Listing

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