SummaryRecently, leucine-rich repeat transmembrane proteins (LRRTMs) were found to be synaptic cell-adhesion molecules that, when expressed in nonneuronal cells, induce presynaptic differentiation in contacting axons. We now demonstrate that LRRTM2 induces only excitatory synapses, and that it also acts to induce synapses in transfected neurons similarly to neuroligin-1. Using affinity chromatography, we identified α- and β-neurexins as LRRTM2 ligands, again rendering LRRTM2 similar to neuroligin-1. However, whereas neuroligins bind neurexins containing or lacking an insert in splice site #4, LRRTM2 only binds neurexins lacking an insert in splice site #4. Binding of neurexins to LRRTM2 can produce cell-adhesion junctions, consistent with a...
AbstractMost neurons form synapses exclusively with other neurons, but little is known about the mol...
SummaryFormation of synapses requires specific cellular interactions that organize pre- and postsyna...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...
SummaryRecently, leucine-rich repeat transmembrane proteins (LRRTMs) were found to be synaptic cell-...
SummaryWe identify the leucine-rich repeat transmembrane protein LRRTM2 as a key regulator of excita...
Summary We identify the leucine-rich repeat transmembrane protein LRRTM2 as a key regulator of excit...
SummaryWe identify the leucine-rich repeat transmembrane protein LRRTM2 as a key regulator of excita...
SummaryPrevious studies suggested that postsynaptic neuroligins form a trans-synaptic complex with p...
AbstractFormation of synaptic connections requires alignment of neurotransmitter receptors on postsy...
SummarySelective synapse development determines how complex neuronal networks in the brain are forme...
SummaryDelineating the molecular basis of synapse development is crucial for understanding brain fun...
The four members of the LRRTM family (LRRTM1-4) are postsynaptic adhesion molecules essential for ex...
The four members of the LRRTM family (LRRTM1-4) are postsynaptic adhesion molecules essential for ex...
Synaptic transmission depends on the matching and alignment of presynaptically released transmitters...
SummaryNeurexins are presynaptic cell-adhesion molecules that form trans-synaptic complexes with pos...
AbstractMost neurons form synapses exclusively with other neurons, but little is known about the mol...
SummaryFormation of synapses requires specific cellular interactions that organize pre- and postsyna...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...
SummaryRecently, leucine-rich repeat transmembrane proteins (LRRTMs) were found to be synaptic cell-...
SummaryWe identify the leucine-rich repeat transmembrane protein LRRTM2 as a key regulator of excita...
Summary We identify the leucine-rich repeat transmembrane protein LRRTM2 as a key regulator of excit...
SummaryWe identify the leucine-rich repeat transmembrane protein LRRTM2 as a key regulator of excita...
SummaryPrevious studies suggested that postsynaptic neuroligins form a trans-synaptic complex with p...
AbstractFormation of synaptic connections requires alignment of neurotransmitter receptors on postsy...
SummarySelective synapse development determines how complex neuronal networks in the brain are forme...
SummaryDelineating the molecular basis of synapse development is crucial for understanding brain fun...
The four members of the LRRTM family (LRRTM1-4) are postsynaptic adhesion molecules essential for ex...
The four members of the LRRTM family (LRRTM1-4) are postsynaptic adhesion molecules essential for ex...
Synaptic transmission depends on the matching and alignment of presynaptically released transmitters...
SummaryNeurexins are presynaptic cell-adhesion molecules that form trans-synaptic complexes with pos...
AbstractMost neurons form synapses exclusively with other neurons, but little is known about the mol...
SummaryFormation of synapses requires specific cellular interactions that organize pre- and postsyna...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...