MDGAs interact selectively with neuroligin-2 but not other neuroligins to regulate inhibitory synapse development
Kangduk Lee1, Yoonji Kim, Sung-Jin Lee
1Department of Biochemistry, College of Life Science and Biotechnology, Yonsei University, Seoul 120-749, Korea.
Abstract:
The MAM domain-containing GPI anchor proteins MDGA1 and MDGA2 are Ig superfamily adhesion molecules composed of six IG domains, a fibronectin III domain, a MAM domain, and a GPI anchor. MDGAs contribute to the radial migration and positioning of a subset of cortical neurons during early neural development. However, MDGAs continue to be expressed in postnatal brain, and their functions during postnatal neural development remain unknown. Here, we demonstrate that MDGAs specifically and with a nanomolar affinity bind to neuroligin-2, a cell-adhesion molecule of inhibitory synapses, but do not bind detectably to neuroligin-1 or neuroligin-3. We observed no cell adhesion between cells expressing neuroligin-2 and MDGA1, suggesting a cis interaction. Importantly, RNAi-mediated knockdown of MDGAs increased the abundance of inhibitory but not excitatory synapses in a neuroligin-2-dependent manner. Conversely, overexpression of MDGA1 decreased the numbers of functional inhibitory synapses. Likewise, coexpression of both MDGA1 and neuroligin-2 reduced the synaptogenic capacity of neuroligin-2 in an artificial synapse-formation assay by abolishing the ability of neuroligin-2 to form an adhesion complex with neurexins. Taken together, our data suggest that MDGAs inhibit the activity of neuroligin-2 in controlling the function of inhibitory synapses and that MDGAs do so by binding to neuroligin-2.
Insights
MDGA1 and MDGA2 proteins bind neuroligin-2, a key inhibitory synapse molecule. This interaction regulates inhibitory synapse function and number in the postnatal brain.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- MDGA1 and MDGA2 are Ig superfamily adhesion molecules involved in early neural development.
- Their functions in the postnatal brain remain largely unknown.
- MDGAs are MAM domain-containing GPI anchor proteins.
Purpose of the Study:
- To investigate the function of MDGA1 and MDGA2 in postnatal neural development.
- To identify binding partners of MDGA1 and MDGA2.
- To elucidate the role of MDGAs in synapse formation and function.
Main Methods:
- Biochemical assays to determine binding affinity between MDGAs and neuroligins.
- RNAi-mediated knockdown and overexpression studies in neuronal cultures.
- Synapse formation assays using co-culture systems and artificial synapse formation.
Main Results:
- MDGAs specifically bind neuroligin-2 with nanomolar affinity.
- MDGA knockdown increases inhibitory synapse abundance in a neuroligin-2-dependent manner.
- MDGA overexpression decreases functional inhibitory synapses by interfering with neuroligin-2-neurexin interactions.
Conclusions:
- MDGAs act as negative regulators of neuroligin-2 function at inhibitory synapses.
- MDGAs inhibit the synaptogenic capacity of neuroligin-2.
- MDGAs play a critical role in modulating inhibitory synapse stability and function postnatally.
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