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Publication : beta-Phorbol ester-induced enhancement of exocytosis in large mossy fiber boutons of mouse hippocampus.

First Author  Hikima T Year  2009
Journal  J Physiol Sci Volume  59
Issue  4 Pages  263-74
PubMed ID  19340534 Mgi Jnum  J:337563
Mgi Id  MGI:6511490 Doi  10.1007/s12576-009-0031-0
Citation  Hikima T, et al. (2009) beta-Phorbol ester-induced enhancement of exocytosis in large mossy fiber boutons of mouse hippocampus. J Physiol Sci 59(4):263-74
abstractText  beta-Phorbol esters (BPE), synthetic analogues of diacylglycerol (DAG), induce the potentiation of transmission in many kinds of synapses through activating the C(1) domain-containing receptors. However, their effects on synaptic vesicle exocytosis have not yet been investigated. Here, we evaluated the vesicular exocytosis directly from individual large mossy fiber boutons (LMFBs) in hippocampal slices from transgenic mice that selectively express synaptopHluorin (SpH). We found that the activity-dependent increment of SpH fluorescence (DeltaSpH) was enhanced by 4beta-phorbol 12,13-diacetate (PDAc), one of the BPEs, without influencing the recycled component of SpH. These PDAc effects on DeltaSpH were almost completely inhibited by staurosporine, a non-selective antagonist of protein kinases. However, intermittent synaptic transmission was still potentiated through a staurosporine-resistant mechanism. The staurosporine-sensitive cascade may facilitate the vesicle replenishment, thus maintaining the fidelity of transmission at a high level during repetitive firing of the presynaptic neuron.
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