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Dynamin I phosphorylation by GSK3 controls activity-dependent bulk endocytosis of synaptic vesicles.


ABSTRACT: Glycogen synthase kinase 3 (GSK3) is a critical enzyme in neuronal physiology; however, it is not yet known whether it has any specific role in presynaptic function. We found that GSK3 phosphorylates a residue on the large GTPase dynamin I (Ser-774) both in vitro and in primary rat neuronal cultures. This was dependent on prior phosphorylation of Ser-778 by cyclin-dependent kinase 5. Using both acute inhibition with pharmacological antagonists and silencing of expression with short hairpin RNA, we found that GSK3 was specifically required for activity-dependent bulk endocytosis (ADBE) but not clathrin-mediated endocytosis. Moreover we found that the specific phosphorylation of Ser-774 on dynamin I by GSK3 was both necessary and sufficient for ADBE. These results demonstrate a presynaptic role for GSK3 and they indicate that a protein kinase signaling cascade prepares synaptic vesicles for retrieval during elevated neuronal activity.

SUBMITTER: Clayton EL 

PROVIDER: S-EPMC2894011 | biostudies-literature | 2010 Jul

REPOSITORIES: biostudies-literature

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Dynamin I phosphorylation by GSK3 controls activity-dependent bulk endocytosis of synaptic vesicles.

Clayton Emma L EL   Sue Nancy N   Smillie Karen J KJ   O'Leary Timothy T   Bache Nicolai N   Cheung Giselle G   Cole Adam R AR   Wyllie David J DJ   Sutherland Calum C   Robinson Phillip J PJ   Cousin Michael A MA  

Nature neuroscience 20100606 7


Glycogen synthase kinase 3 (GSK3) is a critical enzyme in neuronal physiology; however, it is not yet known whether it has any specific role in presynaptic function. We found that GSK3 phosphorylates a residue on the large GTPase dynamin I (Ser-774) both in vitro and in primary rat neuronal cultures. This was dependent on prior phosphorylation of Ser-778 by cyclin-dependent kinase 5. Using both acute inhibition with pharmacological antagonists and silencing of expression with short hairpin RNA,  ...[more]

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