Burré Jacqueline, Volknandt Walter
Institute of Cell Biology and Neuroscience, Neurochemistry, JW Goethe University, Frankfurt, Germany.
J Neurochem. 2007 Jun;101(6):1448-62. doi: 10.1111/j.1471-4159.2007.04453.x. Epub 2007 Mar 9.
Synaptic vesicles are key organelles in neurotransmission. Vesicle integral or membrane-associated proteins mediate the various functions the organelle fulfills during its life cycle. These include organelle transport, interaction with the nerve terminal cytoskeleton, uptake and storage of low molecular weight constituents, and the regulated interaction with the pre-synaptic plasma membrane during exo- and endocytosis. Within the past two decades, converging work from several laboratories resulted in the molecular and functional characterization of the proteinaceous inventory of the synaptic vesicle compartment. However, up until recently and due to technical difficulties, it was impossible to screen the entire organelle thoroughly. Recent advances in membrane protein identification and mass spectrometry (MS) have dramatically promoted this field. A comparison of different techniques for elucidating the proteinaceous composition of synaptic vesicles revealed numerous overlaps but also remarkable differences in the protein constituents of the synaptic vesicle compartment, indicating that several protein separation techniques in combination with differing MS approaches are required to identify and characterize the synaptic vesicle proteome. This review highlights the power of various gel separation techniques and MS analyses for the characterization of the proteome of highly purified synaptic vesicles. Furthermore, the newly detected protein assignments to synaptic vesicles, especially those proteins which are new to the inventory of the synaptic vesicle proteome, are critically discussed.
突触小泡是神经传递中的关键细胞器。小泡整合蛋白或膜相关蛋白介导该细胞器在其生命周期中所履行的各种功能。这些功能包括细胞器运输、与神经末梢细胞骨架的相互作用、低分子量成分的摄取和储存,以及在胞吐和胞吞过程中与突触前质膜的调节性相互作用。在过去二十年中,多个实验室的协同工作实现了对突触小泡区室蛋白质成分的分子和功能表征。然而,直到最近,由于技术困难,彻底筛选整个细胞器是不可能的。膜蛋白鉴定和质谱(MS)方面的最新进展极大地推动了该领域的发展。对阐明突触小泡蛋白质组成的不同技术进行比较发现,突触小泡区室的蛋白质成分存在大量重叠,但也有显著差异,这表明需要几种蛋白质分离技术与不同的质谱方法相结合,才能鉴定和表征突触小泡蛋白质组。本综述强调了各种凝胶分离技术和质谱分析在表征高度纯化的突触小泡蛋白质组方面的作用。此外,还对新检测到的突触小泡蛋白质归属,特别是那些突触小泡蛋白质组清单中的新蛋白质进行了批判性讨论。