4.8 Article

Homophilic Dscam interactions control complex dendrite morphogenesis

Journal

NEURON
Volume 54, Issue 3, Pages 417-427

Publisher

CELL PRESS
DOI: 10.1016/j.neuron.2007.04.013

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Funding

  1. NINDS NIH HHS [R01 NS046747-04, R01 NS046747-02, R01 NS046747-03, R01-NS46747, R01 NS046747-01, R01 NS046747] Funding Source: Medline

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Alternative splicing of the Drosophila gene Dscam results in up to 38,016 different receptor isoforms proposed to interact by isoform-specific homophilic binding. We report that Dscam controls cell-intrinsic aspects of dendrite guidance in all four classes of dendrite arborization (da) neurons. Loss of Dscam in single neurons causes a strong increase in self-crossing. Restriction of dendritic fields of neighboring class III neurons appeared intact in mutant neurons, suggesting that dendritic self-avoidance, but not heteroneuronal tiling, may depend on Dscam. Overexpression of the same Dscam isoforms in two da neurons with overlapping dendritic fields forced a spatial segregation of the two fields, supporting the model that dendritic branches of da neurons use isoform-specific homophilic interactions to ensure minimal overlap. Homophilic binding of the highly diverse extracellular domains of Dscam may therefore limit the use of the same core repulsion mechanism to cell-intrinsic interactions without interfering with heteroneuronal interactions.

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