The nervous system consists of an ensemble of billions of neurons interconnected in a highly specific pattern that allows proper propagation and integration of neural activities. The organization of these specific connections emerges from sequential developmental events including axon guidance, target selection, and synapse formation. These events critically rely on cell-cell recognition and communication mediated by cell-surface ligands and receptors. Recent studies have uncovered central roles for leucine-rich repeat (LRR) domain-containing proteins, not only in organizing neural connectivity from axon guidance to target selection to synapse formation, but also in various nervous system disorders. Their versatile LRR domains, in particula...
Background: Leucine-rich repeats (LRRs) are highly versatile and evolvable protein-ligand interactio...
SummaryExtracellular domains of cell surface receptors and ligands mediate cell-cell communication, ...
The synapse is the most elementary operating unit in neurons, creating neural circuits that underlie...
The nervous system consists of an ensemble of billions of neurons interconnected in a highly specifi...
The function of neural circuits depends on the precise connectivity between populations of neurons. ...
The function of neural circuits depends on the precise connectivity between populations of neurons. ...
The brain harbors billions of neurons that form distinct neural circuits with exquisite specificity....
Proper function of the nervous system critically relies on sophisticated neuronal networks interconn...
THESIS 10236The functional brain is critically dependent on a highly specific and perfectly timed ge...
Neural circuits form with remarkable specificity during development to permit the flow and computati...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...
SummaryLeucine-rich repeat transmembrane proteins (LRRTMs) are synaptic cell adhesion molecules that...
SummaryIn Drosophila embryos and larvae, a small number of identified motor neurons innervate body w...
Pyramidal neurons express rich repertoires of leucine-rich repeat (LRR)-containing adhesion molecule...
Background: Leucine-rich repeats (LRRs) are highly versatile and evolvable protein-ligand interactio...
SummaryExtracellular domains of cell surface receptors and ligands mediate cell-cell communication, ...
The synapse is the most elementary operating unit in neurons, creating neural circuits that underlie...
The nervous system consists of an ensemble of billions of neurons interconnected in a highly specifi...
The function of neural circuits depends on the precise connectivity between populations of neurons. ...
The function of neural circuits depends on the precise connectivity between populations of neurons. ...
The brain harbors billions of neurons that form distinct neural circuits with exquisite specificity....
Proper function of the nervous system critically relies on sophisticated neuronal networks interconn...
THESIS 10236The functional brain is critically dependent on a highly specific and perfectly timed ge...
Neural circuits form with remarkable specificity during development to permit the flow and computati...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...
The leucine rich repeat transmembrane neuronal (LRRTM) proteins are a family of four synaptogenic ce...
SummaryLeucine-rich repeat transmembrane proteins (LRRTMs) are synaptic cell adhesion molecules that...
SummaryIn Drosophila embryos and larvae, a small number of identified motor neurons innervate body w...
Pyramidal neurons express rich repertoires of leucine-rich repeat (LRR)-containing adhesion molecule...
Background: Leucine-rich repeats (LRRs) are highly versatile and evolvable protein-ligand interactio...
SummaryExtracellular domains of cell surface receptors and ligands mediate cell-cell communication, ...
The synapse is the most elementary operating unit in neurons, creating neural circuits that underlie...