Weingarten Jens, Laßek Melanie, Mueller Benjamin F, Rohmer Marion, Baeumlisberger Dominic, Beckert Benedikt, Ade Jens, Gogesch Patricia, Acker-Palmer Amparo, Karas Michael, Volknandt Walter
These authors contributed equally to this work..
Department Molecular and Cellular Neurobiology, Institute for Cell Biology and Neuroscience, Goethe University Frankfurt am Main, Max-von-Laue-Straße 13, 60438 Frankfurt am Main, Germany.
Proteomes. 2015 May 13;3(2):74-88. doi: 10.3390/proteomes3020074.
Neurotransmitter release as well as structural and functional dynamics at the presynaptic active zone (PAZ) comprising synaptic vesicles attached to the presynaptic plasma membrane are mediated and controlled by its proteinaceous components. Here we describe a novel experimental design to immunopurify the native PAZ-complex from individual mouse brain regions such as olfactory bulb, hippocampus, and cerebellum with high purity that is essential for comparing their proteome composition. Interestingly, quantitative immunodetection demonstrates significant differences in the abundance of prominent calcium-dependent PAZ constituents. Furthermore, we characterized the proteomes of the immunoisolated PAZ derived from the three brain regions by mass spectrometry. The proteomes of the release sites from the respective regions exhibited remarkable differences in the abundance of a large variety of PAZ constituents involved in various functional aspects of the release sites such as calcium homeostasis, synaptic plasticity and neurogenesis. On the one hand, our data support an identical core architecture of the PAZ for all brain regions and, on the other hand, demonstrate that the proteinaceous composition of their presynaptic active zones vary, suggesting that changes in abundance of individual proteins strengthen the ability of the release sites to adapt to specific functional requirements.
神经递质释放以及由附着于突触前质膜的突触小泡构成的突触前活性区(PAZ)的结构和功能动力学,均由其蛋白质成分介导和控制。在此,我们描述了一种新颖的实验设计,可从单个小鼠脑区(如嗅球、海马体和小脑)中以高纯度免疫纯化天然PAZ复合物,这对于比较它们的蛋白质组组成至关重要。有趣的是,定量免疫检测表明,突出的钙依赖性PAZ成分的丰度存在显著差异。此外,我们通过质谱对源自三个脑区的免疫分离PAZ的蛋白质组进行了表征。各个区域释放位点的蛋白质组在参与释放位点各种功能方面(如钙稳态、突触可塑性和神经发生)的多种PAZ成分的丰度上表现出显著差异。一方面,我们的数据支持所有脑区PAZ具有相同的核心结构,另一方面,表明其突触前活性区的蛋白质组成各不相同,这表明单个蛋白质丰度的变化增强了释放位点适应特定功能需求的能力。