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we present evidence that, during learning, the translational regulator Orb2A tags specific synapses of mushroom body neurons for later consolidation. Consolidation involves the subsequent recruitment of Orb2B and the activity-dependent synthesis of CaMKII
these data support a model in which CaMKII-mediated synapsin phosphorylation in local circuit interneurons induces synaptic vesicle mobilization and thereby presynaptic facilitation of GABA release that underlies olfactory short-term habituation.
Regulated CaMKII autophosphorylation appears essential in central synapse development, and particular cholinergic synapses are affected differentially, although they operate via the same nicotinic receptor.
These results suggest that presynaptic CaMKII activation depends on autophosphorylation and global Ca(2 (zeige CA2 Antikörper)+) in the terminal, while translocation to AZs requires Ca(2 (zeige CA2 Antikörper)+) microdomains generated by IP3Rs.
This study indicated a role for patterned electrical activity and presynaptic calcium signaling, acting through CaMKII, in modulating a retrograde signal during the refinement of synaptic connections.
We found that postsynaptic CaMKII regulates the localization of GluRIIA and GluRIIB, we hypothesize that postsynaptic CaMKII activity monitors the calcium influx through GluRIIA and regulate the amount of synaptic GluRIIA during larval stages
phosphorylates and regulates the eag (zeige KCNH1 Antikörper) potassium channel (zeige KCNAB2 Antikörper).
PS integrins function upstream of CaMKII in the development of synaptic architecture at the neuromuscular junction.
Regulation of neuronal excitability in Drosophila by constitutively active CaMKII.
These studies suggest two significant functions of postsynaptic CaMKII in synaptogenesis-retrograde modulation of presynaptic properties and coordinated regulation of pre- and postsynaptic maturation.
A key regulator of plasticity in synaptic physiology and behavior, alterations in its activity produce pleiotrophic effects that involve synaptic transmission and development as well as various aspects of behavior. Directly modulates eag potassium channels.
, CaM kinase
, CaM kinase II
, Ca[2+]/calmodulin-dependent protein kinase II
, Calcium/calmodulin-dependent protein kinase
, calcium/ calmodulin-dependent protein kinase II
, calcium/calmodulin-dependent protein kinase II
, calmodulin kinase II
, calmodulin-dependent kinase
, calmodulin-dependent protein kinase II
, lethal (4) 102EFb
, Ca2+/calmodulin-dependent protein kinase II