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Bead Aggregation Assays for the Characterization of Putative Cell Adhesion Molecules
Published on: October 17, 2014
Down syndrome cell adhesion molecule (DSCAM) associates with uncoordinated-5C (UNC5C) in netrin-1-mediated growth
Anish A Purohit1, Weiquan Li, Chao Qu
1Department of Biological Sciences, University of Toledo, Toledo, Ohio 43606, USA.
Abstract:
In the developing nervous system, neuronal growth cones explore the extracellular environment for guidance cues, which can guide them along specific trajectories toward their targets. Netrin-1, a bifunctional guidance cue, binds to deleted in colorectal cancer (DCC) and DSCAM mediating axon attraction, and UNC5 mediating axon repulsion. Here, we show that DSCAM interacts with UNC5C and this interaction is stimulated by netrin-1 in primary cortical neurons and postnatal cerebellar granule cells. DSCAM partially co-localized with UNC5C in primary neurons and brain tissues. Netrin-1 induces axon growth cone collapse of mouse cerebellum external granule layer (EGL) cells, and the knockdown of DSCAM or UNC5C by specific shRNAs or blocking their signaling by overexpressing dominant negative mutants suppresses netrin-1-induced growth cone collapse. Similarly, the simultaneous knockdown of DSCAM and UNC5C also blocks netrin-1-induced growth cone collapse in EGL cells. Netrin-1 increases tyrosine phosphorylation of endogenous DSCAM, UNC5C, FAK, Fyn, and PAK1, and promotes complex formation of DSCAM with these signaling molecules in primary postnatal cerebellar neurons. Inhibition of Src family kinases efficiently reduces the interaction of DSCAM with UNC5C, FAK, Fyn, and PAK1 and tyrosine phosphorylation of these proteins as well as growth cone collapse of mouse EGL cells induced by netrin-1. The knockdown of DSCAM inhibits netrin-induced tyrosine phosphorylation of UNC5C and Fyn as well as the interaction of UNC5C with Fyn. The double knockdown of both receptors abolishes the induction of Fyn tyrosine phosphorylation by netrin-1. Our study reveals the first evidence that DSCAM coordinates with UNC5C in netrin-1 repulsion.
Insights
Downstream of netrin-1, DSCAM (Down syndrome cell adhesion molecule) coordinates with UNC5C to mediate axon repulsion. This interaction, crucial for neuronal guidance, involves signaling pathways and kinase activity.
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Biology
Background:
- Neuronal growth cones navigate using guidance cues in the developing nervous system.
- Netrin-1 is a bifunctional guidance cue, mediating both attraction (via DCC and DSCAM) and repulsion (via UNC5).
Purpose of the Study:
- To investigate the interaction between DSCAM and UNC5C in response to netrin-1.
- To elucidate the signaling mechanisms underlying netrin-1-induced axon repulsion mediated by DSCAM and UNC5C.
Main Methods:
- Co-immunoprecipitation assays to detect protein interactions.
- RNA interference (shRNA) and dominant-negative mutants to knock down gene expression.
- Immunofluorescence microscopy for co-localization studies.
- Western blotting to assess protein phosphorylation and complex formation.
Main Results:
- DSCAM interacts with UNC5C, an interaction stimulated by netrin-1.
- Netrin-1 induces growth cone collapse in cerebellar EGL cells, which is suppressed by DSCAM or UNC5C knockdown.
- Netrin-1 increases tyrosine phosphorylation of DSCAM, UNC5C, FAK, Fyn, and PAK1, promoting complex formation.
- Src family kinase inhibition reduces these interactions and phosphorylation events, as well as growth cone collapse.
Conclusions:
- DSCAM coordinates with UNC5C to mediate netrin-1-induced axon repulsion.
- This process involves Src family kinases and downstream signaling molecules like FAK, Fyn, and PAK1.
- The findings reveal a novel mechanism for repulsive axon guidance.
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