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Publication : CaMKII Autophosphorylation Is Necessary for Optimal Integration of Ca<sup>2+</sup> Signals during LTP Induction, but Not Maintenance.

First Author  Chang JY Year  2017
Journal  Neuron Volume  94
Issue  4 Pages  800-808.e4
PubMed ID  28521133 Mgi Jnum  J:256039
Mgi Id  MGI:6114422 Doi  10.1016/j.neuron.2017.04.041
Citation  Chang JY, et al. (2017) CaMKII Autophosphorylation Is Necessary for Optimal Integration of Ca(2+) Signals during LTP Induction, but Not Maintenance. Neuron 94(4):800-808.e4
abstractText  CaMKII plays a critical role in decoding calcium (Ca(2+)) signals to initiate long-lasting synaptic plasticity. However, the properties of CaMKII that mediate Ca(2+) signals in spines remain elusive. Here, we measured CaMKII activity in spines using fast-framing two-photon fluorescence lifetime imaging. Following each pulse during repetitive Ca(2+) elevations, CaMKII activity increased in a stepwise manner. Thr286 phosphorylation slows the decay of CaMKII and thus lowers the frequency required to induce spine plasticity by several fold. In the absence of Thr286 phosphorylation, increasing the stimulation frequency results in high peak mutant CaMKII(T286A) activity that is sufficient for inducing plasticity. Our findings demonstrate that Thr286 phosphorylation plays an important role in induction of LTP by integrating Ca(2+) signals, and it greatly promotes, but is dispensable for, the activation of CaMKII and LTP.
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