TY - JOUR
T1 - SAD
T2 - A Presynaptic Kinase Associated with Synaptic Vesicles and the Active Zone Cytomatrix that Regulates Neurotransmitter Release
AU - Inoue, Eiji
AU - Mochida, Sumiko
AU - Takagi, Hiroshi
AU - Higa, Susumu
AU - Deguchi-Tawarada, Maki
AU - Takao-Rikitsu, Etsuko
AU - Inoue, Marie
AU - Yao, Ikuko
AU - Takeuchi, Kosei
AU - Kitajima, Isao
AU - Setou, Mitsutoshi
AU - Ohtsuka, Toshihisa
AU - Takai, Yoshimi
PY - 2006/4/20
Y1 - 2006/4/20
N2 - A serine/threonine kinase SAD-1 in C. elegans regulates synapse development. We report here the isolation and characterization of mammalian orthologs of SAD-1, named SAD-A and SAD-B, which are specifically expressed in the brain. SAD-B is associated with synaptic vesicles and, like the active zone proteins CAST and Bassoon, is tightly associated with the presynaptic cytomatrix in nerve terminals. A short conserved region (SCR) in the COOH-terminus is required for the synaptic localization of SAD-B. Overexpression of SAD-B in cultured rat hippocampal neurons significantly increases the frequency of miniature excitatory postsynaptic current but not its amplitude. Introduction of SCR into presynaptic superior cervical ganglion neurons in culture significantly inhibits evoked synaptic transmission. Moreover, SCR decreases the size of the readily releasable pool measured by applying hypertonic sucrose. Furthermore, SAD-B phosphorylates the active zone protein RIM1 but not Munc13-1. These results suggest that mammalian SAD kinase presynaptically regulates neurotransmitter release.
AB - A serine/threonine kinase SAD-1 in C. elegans regulates synapse development. We report here the isolation and characterization of mammalian orthologs of SAD-1, named SAD-A and SAD-B, which are specifically expressed in the brain. SAD-B is associated with synaptic vesicles and, like the active zone proteins CAST and Bassoon, is tightly associated with the presynaptic cytomatrix in nerve terminals. A short conserved region (SCR) in the COOH-terminus is required for the synaptic localization of SAD-B. Overexpression of SAD-B in cultured rat hippocampal neurons significantly increases the frequency of miniature excitatory postsynaptic current but not its amplitude. Introduction of SCR into presynaptic superior cervical ganglion neurons in culture significantly inhibits evoked synaptic transmission. Moreover, SCR decreases the size of the readily releasable pool measured by applying hypertonic sucrose. Furthermore, SAD-B phosphorylates the active zone protein RIM1 but not Munc13-1. These results suggest that mammalian SAD kinase presynaptically regulates neurotransmitter release.
KW - CELLBIO
KW - MOLNEURO
KW - SIGNALING
UR - https://www.scopus.com/pages/publications/33646065656
UR - https://www.scopus.com/pages/publications/33646065656#tab=citedBy
U2 - 10.1016/j.neuron.2006.03.018
DO - 10.1016/j.neuron.2006.03.018
M3 - Article
C2 - 16630837
AN - SCOPUS:33646065656
SN - 0896-6273
VL - 50
SP - 261
EP - 275
JO - Neuron
JF - Neuron
IS - 2
ER -