Key result
Neuronal stimulation induced an NMDA- and Ca2+/CaM-dependent redistribution of Rem2 into clusters, which correlated spatially and temporally with CaMKII clustering.
Absolute Event Rate: 3.52% vs 1.1%
p-value: p=<0.001
This study identifies a novel function for Rem2 in co-trafficking with CaMKII in neurons, suggesting a potential role in neuronal plasticity.
Hypothesis-generating for Rem2-CaMKII co-trafficking in plasticity; leaves open relevance to human neurons.
BACKGROUND: Rem2 is a small monomeric GTP-binding protein of the RGK family, whose known functions are modulation of calcium channel currents and alterations of cytoskeletal architecture. Rem2 is the only RGK protein found predominantly in the brain, where it has been linked to synaptic development. We wished to determine the effect of neuronal activity on the subcellular distribution of Rem2 and its interacting partners. RESULTS: We show that Rem2 undergoes activity-and N-Methyl-D-Aspartate Receptor (NMDAR)-dependent translocation in rat hippocampal neurons. This redistribution of Rem2, from a diffuse pattern to one that is highly punctate, is dependent on Ca(2+) influx, on binding to calmodulin (CaM), and also involves an auto-inhibitory domain within the Rem2 distal C-terminus region. We found that Rem2 can bind to Ca(2+)/CaM-dependent protein kinase IIα (CaMKII) a in Ca(2+)/CaM-dependent manner. Furthermore, our data reveal a spatial and temporal correlation between NMDAR-dependent clustering of Rem2 and CaMKII in neurons, indicating co-assembly and co-trafficking in neurons. Finally, we show that inhibiting CaMKII aggregation in neurons and HEK cells reduces Rem2 clustering, and that Rem2 affects the baseline distribution of CaMKII in HEK cells. CONCLUSIONS: Our data suggest a novel function for Rem2 in co-trafficking with CaMKII, and thus potentially expose a role in neuronal plasticity.
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Flynn et al. (2012) studied this question. Neuronal stimulation (glutamate/glycine or photoconductive) vs. Unstimulated cells was evaluated on Subcellular redistribution of Rem2 (ratio of pixel variance after/before stimulation) (p=<0.001). Neuronal stimulation induced an NMDA- and Ca2+/CaM-dependent redistribution of Rem2 into clusters, which correlated spatially and temporally with CaMKII clustering.
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