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七鳃鳗中的巨大网状脊髓突触:活跃区与近活跃区之间的分子联系。

Giant reticulospinal synapse in lamprey: molecular links between active and periactive zones.

作者信息

Brodin Lennart, Shupliakov Oleg

机构信息

Department of Neuroscience, CEDB, Karolinska Institutet, S-17177 Stockholm, Sweden.

出版信息

Cell Tissue Res. 2006 Nov;326(2):301-10. doi: 10.1007/s00441-006-0216-2. Epub 2006 Jun 20.

Abstract

Deciphering the function of synaptic release sites is central to understanding neuronal communication. Here, we review studies of the lamprey giant reticulospinal synapse, a model that can be used to dissect synaptic vesicle trafficking at single release sites. The presynaptic axon is large and contains active zones that are spatially separated from each other. During activity, synaptic vesicle membrane is shuttled between the active zone and the periactive zone at which endocytosis occurs. Recent studies have shown that the periactive zone contains an actin-rich cytomatrix that expands during synaptic activity. This cytomatrix has been implicated in multiple functions that include (1) activity-dependent trafficking of proteins between the synaptic vesicle cluster and the periactive zone, (2) synaptic vesicle endocytosis, and (3) the movement of newly formed synaptic vesicles to the vesicle cluster. The actin cytomatrix thus provides a link between the active zone and the periactive zone; this link appears to be critical for sustained cycling of synaptic vesicles.

摘要

解读突触释放位点的功能是理解神经元通讯的核心。在此,我们回顾对七鳃鳗巨大网状脊髓突触的研究,该模型可用于剖析单个释放位点处的突触小泡运输。突触前轴突很大,包含彼此在空间上分离的活性区。在活动期间,突触小泡膜在活性区和发生内吞作用的活性周围区之间穿梭。最近的研究表明,活性周围区含有富含肌动蛋白的细胞基质,其在突触活动期间会扩展。这种细胞基质涉及多种功能,包括(1)突触小泡簇与活性周围区之间蛋白质的活性依赖性运输,(2)突触小泡内吞作用,以及(3)新形成的突触小泡向小泡簇的移动。肌动蛋白细胞基质因此在活性区和活性周围区之间提供了联系;这种联系似乎对突触小泡的持续循环至关重要。

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