发布: 2017年12月20日第7卷第24期 DOI: 10.21769/BioProtoc.2664 浏览次数: 6910
评审: Anca Flavia SavulescuAnonymous reviewer(s)
Abstract
In this paper, our protocol for preparation of brain synaptosomes is described. Synaptosomes are a valuable model system for analysis of structural components of the synapse as well as for investigation of synaptic function. Synaptosomal preparations are necessary for understanding molecular changes at synapses where critical post-translational modifications of synaptic proteins may occur. Not only are synaptosomes rich in synaptic proteins, but they can be used for analyzing uptake of neurotransmitters into synaptic vesicles and for analysis of the involvement of neurotransmitter synthesis and release. Synaptosomes can be stimulated with increased calcium influx to release neurotransmitters. Synaptosomal preparations have been used in characterizing calcium dependent phosphorylation and activation of the GABA synthesizing enzyme GAD65 (L-glutamic acid decarboxylase with molecular weight of 65 kDa). By examining protein complexes on the membrane of synaptic vesicles obtained from synaptosomal preparations, it was possible to characterize the role of GAD65 in the coupled synthesis and vesicular uptake of GABA (γ-aminobutyric acid) culminating in GABA vesicular release, which contributes in an important way to fine-tuning of GABAergic neurotransmission.
Keywords: GAD65 (GAD65)Background
Synaptosomal preparation methods were established in neuroscience research laboratories over 40 years ago and have been of great value in scientific innovations relating to neurotransmitter release with respect to elevated extracellular potassium as well as responses to increased intracellular calcium. In addition to elucidating the process of neurotransmitter release, synaptosomal preparations have been a valuable source of synaptic vesicles. Studies on synaptic vesicles have for example been used in the characterization of protein components that participate in coupled neurotransmitter synthesis and vesicular release. Synaptosomal preparations have also been very valuable as an intermediate in isolation of synaptic vesicles which are then analyzed in terms of protein complexes located on the vesicular membrane that include neurotransmitter synthesizing enzymes. Of key significance in this regard is the vesicular membrane GAD65 complex which includes CSP (Cystine-String Protein), VGAT (Vesicular GABA transporters) and CaMKII (calcium/calmodulin-dependent protein kinase II). Regulation of GAD65 activity has been further characterized in terms of GAD65 cleavage by calpain and activation of membrane bound GAD through phosphorylation as well as accelerated anchoring of GAD65 to SV by palmitoylation.
The basic methodology for vesicular preparation presented in this paper does not significantly differ from the originally established technology from the 1970s but the applications have been greatly extended over this time and therefore expanded to include analytical investigations on neurotransmitter synthesizing enzymes, on signaling complexes associated with these enzymes, on mechanisms of regulation of these enzymes and on functional outcomes of enzyme activation including vesicular neurotransmitter release in response to high extracellular potassium levels or to increased calcium influx.
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文章信息
版权信息
© 2017 The Authors; exclusive licensee Bio-protocol LLC.
如何引用
Modi, J., Prentice, H. and Wu, J. (2017). Preparation, Stimulation and Other Uses of Adult Rat Brain Synaptosomes. Bio-protocol 7(24): e2664. DOI: 10.21769/BioProtoc.2664.
分类
神经科学 > 细胞机理 > 突触生理学
神经科学 > 细胞机理 > 蛋白质分离
细胞生物学 > 细胞信号传导 > 突触传递
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