SummaryThe assembly of synapses and neuronal circuits relies on an array of molecular recognition events and their modification by neuronal activity. Neurexins are a highly polymorphic family of synaptic receptors diversified by extensive alternative splicing. Neurexin variants exhibit distinct isoform-specific biochemical interactions and synapse assembly functions, but the mechanisms governing splice isoform choice are not understood. We demonstrate that Nrxn1 alternative splicing is temporally and spatially controlled in the mouse brain. Neuronal activity triggers a shift in Nrxn1 splice isoform choice via calcium/calmodulin-dependent kinase IV signaling. Activity-dependent alternative splicing of Nrxn1 requires the KH-domain RNA-binding...
The three neurexins genes (NRXN1/2/3) encode polymorphic synaptic membrane proteins that are involve...
SummaryNeurexins and neuroligins play an essential role in synapse function, and their alterations a...
Neuronal alternative splicing is a core mechanism for functional diversification. We previously foun...
The assembly of synapses and neuronal circuits relies on an array of molecular recognition events an...
SummaryThe assembly of synapses and neuronal circuits relies on an array of molecular recognition ev...
The unique anatomical and functional features of principal and interneuron populations are critical ...
SummaryMolecular diversity of surface receptors has been hypothesized to provide a mechanism for sel...
Molecular diversity of surface receptors has been hypothesized to provide a mechanism for selective ...
SLM2 and Sam68 are splicing regulator paralogs that usually overlap in function, yet only SLM2 and n...
SummaryNeurexins are essential presynaptic cell adhesion molecules that are linked to schizophrenia ...
The function of neuronal circuits relies on the properties of individual neuronal cells and their sy...
Sam68 (Src-associated in mitosis, 68 kDa) is a KH domain RNA binding protein implicated in a variety...
Alternative RNA splicing represents a central mechanism for expanding the coding power of genomes. I...
The diversification of cell adhesion molecules by alternative splicing is proposed to underlie molec...
SummaryFormation of synapses requires specific cellular interactions that organize pre- and postsyna...
The three neurexins genes (NRXN1/2/3) encode polymorphic synaptic membrane proteins that are involve...
SummaryNeurexins and neuroligins play an essential role in synapse function, and their alterations a...
Neuronal alternative splicing is a core mechanism for functional diversification. We previously foun...
The assembly of synapses and neuronal circuits relies on an array of molecular recognition events an...
SummaryThe assembly of synapses and neuronal circuits relies on an array of molecular recognition ev...
The unique anatomical and functional features of principal and interneuron populations are critical ...
SummaryMolecular diversity of surface receptors has been hypothesized to provide a mechanism for sel...
Molecular diversity of surface receptors has been hypothesized to provide a mechanism for selective ...
SLM2 and Sam68 are splicing regulator paralogs that usually overlap in function, yet only SLM2 and n...
SummaryNeurexins are essential presynaptic cell adhesion molecules that are linked to schizophrenia ...
The function of neuronal circuits relies on the properties of individual neuronal cells and their sy...
Sam68 (Src-associated in mitosis, 68 kDa) is a KH domain RNA binding protein implicated in a variety...
Alternative RNA splicing represents a central mechanism for expanding the coding power of genomes. I...
The diversification of cell adhesion molecules by alternative splicing is proposed to underlie molec...
SummaryFormation of synapses requires specific cellular interactions that organize pre- and postsyna...
The three neurexins genes (NRXN1/2/3) encode polymorphic synaptic membrane proteins that are involve...
SummaryNeurexins and neuroligins play an essential role in synapse function, and their alterations a...
Neuronal alternative splicing is a core mechanism for functional diversification. We previously foun...