Olesoxime, a cholesterol-like neuroprotectant restrains synaptic vesicle exocytosis in the mice motor nerve terminals: Possible role of VDACs

被引:14
|
作者
Zakyrjanova, Guzalia F. [1 ,2 ]
Gilmutdinov, Amir, I [1 ]
Tsentsevitsky, Andrey N. [1 ]
Petrov, Alexey M. [1 ,2 ]
机构
[1] RAS, Kazan Inst Biochem & Biophys, Lab Biophys Synapt Proc, Fed Res Ctr,Kazan Sci Ctr, 2-31 Lobachevsky St,Box 30, Kazan 420111, Russia
[2] Kazan State Med Univ, Inst Neurosci, 49 Butlerova St, Kazan 420012, Russia
基金
俄罗斯基础研究基金会;
关键词
Olesoxime; Synaptic vesicle; Voltage dependent anion channels; Neuromuscular junction; Neurotransmitter release; Chloride permeability; DEPENDENT ANION CHANNEL; PLASMA-MEMBRANE; NEUROMUSCULAR-JUNCTION; TRANSMITTER RELEASE; MITOCHONDRIA; SYNAPTOSOMES; PERMEABILITY; INHIBITORS; APOPTOSIS; RECEPTOR;
D O I
10.1016/j.bbalip.2020.158739
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Olesoxime is a cholesterol-like neuroprotective compound that targets to mitochondrial voltage dependent anion channels (VDACs). VDACs were also found in the plasma membrane and highly expressed in the presynaptic compartment. Here, we studied the effects of olesoxime and VDAC inhibitors on neurotransmission in the mouse neuromuscular junction. Electrophysiological analysis revealed that olesoxime suppressed selectively evoked neurotransmitter release in response to a single stimulus and 20 Hz activity. Also olesoxime decreased the rate of FM1-43 dye loss (an indicator of synaptic vesicle exocytosis) at low frequency stimulation and 20 Hz. Furthermore, an increase in extracellular Cl- enhanced the action of olesoxime on the exocytosis and olesoxime increased intracellular Cl- levels. The effects of olesoxime on the evoked synaptic vesicle exocytosis and [Cl-](i) were blocked by membrane-permeable and impermeable VDAC inhibitors. Immunofluorescent labeling pointed on the presence of VDACs on the synaptic membranes. Rotenone-induced mitochondrial dysfunction perturbed the exocytotic release of FM1-43 and cell-permeable VDAC inhibitor (but not olesoxime or impermeable VDAC inhibitor) partially mitigated the rotenone-driven alterations in the FM1-43 unloading and mitochondrial superoxide production. Thus, olesoxime restrains neurotransmission by acting on plasmalemmal VDACs whose activation can limit synaptic vesicle exocytosis probably via increasing anion flux into the nerve terminals.
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页数:10
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