Neuronal development orchestrates the formation of an enormous number of synapses that connect the nervous system. In developing presynapses, the core active zone structure has been found to assemble through liquid-liquid phase separation. Here, we find that the phase separation of Caenorhabditis elegans SYD-2/Liprin-α, a key active zone scaffold, is controlled by phosphorylation. We identify the SAD-1 kinase as a regulator of SYD-2 phase separation and determine presynaptic assembly is impaired in sad-1 mutants and increased by overactivation of SAD-1. Using phosphoproteomics, we find SAD-1 phosphorylates SYD-2 on 3 sites that are critical to activate phase separation. Mechanistically, SAD-1 phosphorylation relieves a binding interaction b...
(A, B) HSN synapse formation phenotypes visualized with Airyscan superresolution imaging of endogeno...
Synaptic vesicle (SV) release is spatially and temporally regulated by a network of proteins that fo...
The SAD kinases are conserved regulators of neuronal polarity and synapse morphology. Although SAD...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
AbstractDuring synapse formation, presynaptic axon outgrowth is terminated, presynaptic clusters of ...
BackgroundNeurons assemble into a functional network through a sequence of developmental processes i...
Abstract Background Neurons assemble into a functiona...
SummaryA serine/threonine kinase SAD-1 in C. elegans regulates synapse development. We report here t...
(A) Domain schematic of SYD-2 and constructs used in this figure. (B) In vitro phase separation of S...
Synapses are asymmetric structures that are specialized for neuronal signal transduction. A unique s...
(A, B) HSN synapse formation phenotypes visualized with Airyscan superresolution imaging of endogeno...
Synaptic vesicle (SV) release is spatially and temporally regulated by a network of proteins that fo...
The SAD kinases are conserved regulators of neuronal polarity and synapse morphology. Although SAD...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
Neuronal development orchestrates the formation of an enormous number of synapses that connect the n...
AbstractDuring synapse formation, presynaptic axon outgrowth is terminated, presynaptic clusters of ...
BackgroundNeurons assemble into a functional network through a sequence of developmental processes i...
Abstract Background Neurons assemble into a functiona...
SummaryA serine/threonine kinase SAD-1 in C. elegans regulates synapse development. We report here t...
(A) Domain schematic of SYD-2 and constructs used in this figure. (B) In vitro phase separation of S...
Synapses are asymmetric structures that are specialized for neuronal signal transduction. A unique s...
(A, B) HSN synapse formation phenotypes visualized with Airyscan superresolution imaging of endogeno...
Synaptic vesicle (SV) release is spatially and temporally regulated by a network of proteins that fo...
The SAD kinases are conserved regulators of neuronal polarity and synapse morphology. Although SAD...