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视锥光感受器终末中简化的突触小泡循环

Streamlined synaptic vesicle cycle in cone photoreceptor terminals.

作者信息

Rea Ruth, Li Jian, Dharia Ajay, Levitan Edwin S, Sterling Peter, Kramer Richard H

机构信息

Department of Molecular and Cell Biology, Division of Neurobiology, University of California at Berkeley, Berkeley, CA 94720 USA.

出版信息

Neuron. 2004 Mar 4;41(5):755-66. doi: 10.1016/s0896-6273(04)00088-1.

Abstract

Cone photoreceptors tonically release neurotransmitter in the dark through a continuous cycle of exocytosis and endocytosis. Here, using the synaptic vesicle marker FM1-43, we elucidate specialized features of the vesicle cycle. Unlike retinal bipolar cell terminals, where stimulation triggers bulk membrane retrieval, cone terminals appear to exclusively endocytose small vesicles. These retain their integrity until exocytosis, without pooling their membranes in endosomes. Endocytosed vesicles rapidly disperse through the terminal and are reused with no apparent delay. Unlike other synapses where most vesicles are immobilized and held in reserve, only a small fraction (<15%) becomes immobilized in cones. Photobleaching experiments suggest that vesicles move by diffusion and not by molecular motors on the cytoskeleton and that vesicle movement is not rate limiting for release. The huge reservoir of vesicles that move rapidly throughout cone terminals and the lack of a reserve pool are unique features, providing cones with a steady supply for continuous release.

摘要

视锥光感受器在黑暗中通过胞吐作用和内吞作用的连续循环持续释放神经递质。在此,我们使用突触囊泡标记物FM1-43阐明了囊泡循环的特殊特征。与视网膜双极细胞终末不同,在双极细胞终末刺激会触发大量膜回收,而视锥终末似乎仅内吞小囊泡。这些小囊泡在胞吐作用之前保持其完整性,不会在内体中汇集其膜。内吞的囊泡迅速分散通过终末并被重新利用,没有明显延迟。与大多数囊泡固定并储备的其他突触不同,视锥中只有一小部分(<15%)囊泡会固定下来。光漂白实验表明,囊泡通过扩散移动,而不是通过细胞骨架上的分子马达移动,并且囊泡移动不是释放的限速步骤。视锥终末中快速移动的大量囊泡储备以及缺乏储备池是独特的特征,为视锥提供了持续释放的稳定供应。

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