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突触结合蛋白 1 锚定的内吞蛋白复合物的“分数回收”分析。

'Fractional recovery' analysis of a presynaptic synaptotagmin 1-anchored endocytic protein complex.

机构信息

Toronto Western Research Institute, University Health Network, Toronto, Ontario, Canada.

出版信息

PLoS One. 2006 Dec 20;1(1):e67. doi: 10.1371/journal.pone.0000067.

Abstract

BACKGROUND

The integral synaptic vesicle protein and putative calcium sensor, synaptotagmin 1 (STG), has also been implicated in synaptic vesicle (SV) recovery. However, proteins with which STG interacts during SV endocytosis remain poorly understood. We have isolated an STG-associated endocytic complex (SAE) from presynaptic nerve terminals and have used a novel fractional recovery (FR) assay based on electrostatic dissociation to identify SAE components and map the complex structure. The location of SAE in the presynaptic terminal was determined by high-resolution quantitative immunocytochemistry at the chick ciliary ganglion giant calyx-type synapse.

METHODOLOGY/PRINCIPLE FINDINGS: The first step in FR analysis was to immunoprecipitate (IP) the complex with an antibody against one protein component (the IP-protein). The immobilized complex was then exposed to a high salt (1150 mM) stress-test that caused shedding of co-immunoprecipitated proteins (co-IP-proteins). A Fractional Recovery ratio (FR: recovery after high salt/recovery with control salt as assayed by Western blot) was calculated for each co-IP-protein. These FR values reflect complex structure since an easily dissociated protein, with a low FR value, cannot be intermediary between the IP-protein and a salt-resistant protein. The structure of the complex was mapped and a blueprint generated with a pair of FR analyses generated using two different IP-proteins. The blueprint of SAE contains an AP180/X/STG/stonin 2/intersectin/epsin core (X is unknown and epsin is hypothesized), and an AP2 adaptor, H-/L-clathrin coat and dynamin scission protein perimeter. Quantitative immunocytochemistry (ICA/ICQ method) at an isolated calyx-type presynaptic terminal indicates that this complex is associated with STG at the presynaptic transmitter release face but not with STG on intracellular synaptic vesicles.

CONCLUSIONS/SIGNIFICANCE: We hypothesize that the SAE serves as a recognition site and also as a seed complex for clathrin-mediated synaptic vesicle recovery. The combination of FR analysis with quantitative immunocytochemistry provides a novel and effective strategy for the identification and characterization of biologically-relevant multi-molecular complexes.

摘要

背景

完整的突触小泡蛋白和假定的钙传感器,突触融合蛋白 1(STG),也被牵连到突触小泡(SV)的恢复中。然而,与 STG 在 SV 内吞作用过程中相互作用的蛋白仍然知之甚少。我们已经从突触前神经末梢中分离出与 STG 相关的内吞复合物(SAE),并使用基于静电解离的新型分数恢复(FR)测定法来鉴定 SAE 成分并绘制复合物结构。通过在鸡睫状神经节巨杯状突触的高分辨率定量免疫细胞化学方法确定 SAE 在突触前末端的位置。

方法/原理发现:FR 分析的第一步是用针对一种蛋白成分(免疫沉淀蛋白)的抗体免疫沉淀(IP)复合物。然后,将固定的复合物暴露于高盐(1150 mM)应激测试中,该测试导致共免疫沉淀蛋白(共 IP 蛋白)的脱落。通过 Western blot 测定,用高盐后的恢复/低盐后的恢复的分数恢复比(FR:高盐后的恢复/低盐后的恢复)计算每个共 IP 蛋白的分数恢复比(FR)。这些 FR 值反映了复合物的结构,因为容易解离的蛋白具有较低的 FR 值,不能在 IP 蛋白和耐盐蛋白之间起中介作用。使用两种不同的 IP 蛋白进行的两次 FR 分析生成了复合物的结构图,并生成了蓝图。SAE 的蓝图包含 AP180/X/STG/stonin 2/ intersectin/epsin 核心(X 未知,epsin 假设),以及 AP2 衔接蛋白、H-/L-网格蛋白外壳和 dynamin 切割蛋白边界。在分离的杯状突触前末端进行的定量免疫细胞化学(ICA/ICQ 方法)表明,该复合物与突触前递质释放面的 STG 相关,但与细胞内突触小泡的 STG 不相关。

结论/意义:我们假设 SAE 充当识别位点,并且也是网格蛋白介导的突触小泡恢复的种子复合物。FR 分析与定量免疫细胞化学相结合,为生物相关多分子复合物的鉴定和表征提供了一种新颖有效的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d729/1762330/ff8f18dc4d67/pone.0000067.g001.jpg

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