scholarly journals Decision letter: Functional divergence of Plexin B structural motifs in distinct steps of Drosophila olfactory circuit assembly

2019 ◽  
Author(s):  
Takahiro Chihara ◽  
Bing Ye
2019 ◽  
Author(s):  
Ricardo Guajardo ◽  
David J Luginbuhl ◽  
Shuo Han ◽  
Liqun Luo ◽  
Jiefu Li

AbstractPlexins exhibit multitudinous, evolutionarily conserved functions in the development of nervous systems. However, how Plexins employ their diverse structural motifsin vivoto perform distinct roles in the stepwise assembly of neural circuits is unclear. Here, we systematically mutagenized structural motifs ofDrosophilaPlexin B (PlexB) and examined the function of these variants at multiple PlexB-mediated neurodevelopmental processes in olfactory receptor neurons: axon fasciculation, trajectory choice, and synaptic partner selection. We found that the extracellular Sema domain is essential for all three processes, the catalytic site of the intracellular RapGAP is engaged in none, and the intracellular GTPase-binding motifs are essential for trajectory choice and synaptic partner selection, but are dispensable for fasciculation. Moreover, extracellular PlexB cleavage serves as a regulatory mechanism of PlexB signaling. Thus, PlexB structural motifs have divergent roles in distinct steps of neural development, altogether contributing to the functional versatility of PlexB in neural circuit assembly.


eLife ◽  
2019 ◽  
Vol 8 ◽  
Author(s):  
Ricardo Guajardo ◽  
David J Luginbuhl ◽  
Shuo Han ◽  
Liqun Luo ◽  
Jiefu Li

Plexins exhibit multitudinous, evolutionarily conserved functions in neural development. How Plexins employ their diverse structural motifs in vivo to perform distinct roles is unclear. We previously reported that Plexin B (PlexB) controls multiple steps during the assembly of the Drosophila olfactory circuit (Li et al., 2018b). Here, we systematically mutagenized structural motifs of PlexB and examined the function of these variants in these multiple steps: axon fasciculation, trajectory choice, and synaptic partner selection. We found that the extracellular Sema domain is essential for all three steps, the catalytic site of the intracellular RapGAP is engaged in none, and the intracellular GTPase-binding motifs are essential for trajectory choice and synaptic partner selection, but are dispensable for fasciculation. Moreover, extracellular PlexB cleavage serves as a regulatory mechanism of PlexB signaling. Thus, the divergent roles of PlexB motifs in distinct steps of neural development contribute to its functional versatility in neural circuit assembly.


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