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A Bcl-x(L)-Drp1 complex regulates synaptic vesicle membrane dynamics during endocytosis

Title: A Bcl-x(L)-Drp1 complex regulates synaptic vesicle membrane dynamics during endocytosis
Authors: Li, H
Alavian, KN
Lazrove, E
Mehta, N
Jones, A
Zhang, P
Licznerski, P
Graham, M
Uo, T
Guo, J
Rahner, C
Duman, RS
Morrison, RS
Jonas, EA
Item Type: Journal Article
Abstract: Following exocytosis, the rate of recovery of neurotransmitter release is determined by vesicle retrieval from the plasma membrane and by recruitment of vesicles from reserve pools within the synapse, which is dependent on mitochondrial ATP. The anti-apoptotic Bcl-2 family protein Bcl-xL also regulates neurotransmitter release and recovery in part by increasing ATP availability from mitochondria. We now find, that Bcl-xL directly regulates endocytic vesicle retrieval in hippocampal neurons through protein–protein interaction with components of the clathrin complex. Our evidence suggests that, during synaptic stimulation, Bcl-xL translocates to clathrin-coated pits in a calmodulin-dependent manner and forms a complex with the GTPase Drp1, Mff and clathrin. Depletion of Drp1 produces misformed endocytic vesicles. Mutagenesis studies suggest that formation of the Bcl-xL–Drp1 complex is necessary for the enhanced rate of vesicle endocytosis produced by Bcl-xL, thus providing a mechanism for presynaptic plasticity.
Issue Date: 1-Jul-2013
Date of Acceptance: 20-May-2013
URI: http://hdl.handle.net/10044/1/103324
DOI: 10.1038/ncb2791
ISSN: 1465-7392
Publisher: Nature Research
Start Page: 773
End Page: 785
Journal / Book Title: Nature Cell Biology
Volume: 15
Issue: 7
Publication Status: Published
Online Publication Date: 2013-06-23
Appears in Collections:Department of Brain Sciences



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