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突触小泡在胞吞循环中保持其特性。

Synaptic vesicles retain their identity through the endocytic cycle.

作者信息

Murthy V N, Stevens C F

机构信息

Howard Hughes Medical Institute and Molecular Neurobiology Laboratory, Salk Institute, La Jolla, California 92037, USA.

出版信息

Nature. 1998 Apr 2;392(6675):497-501. doi: 10.1038/33152.

Abstract

After fusion of synaptic vesicles with presynaptic membrane and secretion of the contents of the vesicles into the synaptic cleft (a process known as exocytosis), the vesicular membrane is retrieved by endocytosis (internalization) for re-use. Several issues regarding endocytosis at central synapses are unresolved, including the location of membrane retrieval (relative to the active zone, where exocytosis occurs), the time course of various endocytic steps, and the recycling path taken by newly endocytosed membranes. The classical model of synaptic-vesicle recycling, proposed by analogy to other cellular endocytic pathways, involves retrieval of the membrane, fusion of the membrane with endosome-like compartments and, finally, budding of new synaptic vesicles from endosomes, although the endosomal station may not be obligatory. Here we test the classical model by using the fluorescent membrane dye FM1-43 with quantitative fluorescence microscopy. We find that the amount of dye per vesicle taken up by endocytosis equals the amount of dye a vesicle releases on exocytosis; therefore, we conclude that the internalized vesicles do not, as the classical picture suggests, communicate with intermediate endosome-like compartments during the recycling process.

摘要

突触小泡与突触前膜融合并将小泡内容物分泌到突触间隙(这一过程称为胞吐作用)后,小泡膜通过内吞作用(内化)回收以供再次使用。关于中枢突触处内吞作用的几个问题尚未解决,包括膜回收的位置(相对于发生胞吐作用的活性区)、各种内吞步骤的时间进程以及新内吞的膜所采取的循环路径。通过类比其他细胞内吞途径提出的经典突触小泡循环模型,涉及膜的回收、膜与类内体区室的融合,以及最终从内体中出芽形成新的突触小泡,尽管内体阶段可能并非必需。在这里,我们使用荧光膜染料FM1-43和定量荧光显微镜来测试经典模型。我们发现,通过内吞作用摄取的每个小泡中的染料量等于一个小泡在胞吐作用时释放的染料量;因此,我们得出结论,如经典模型所示,内化的小泡在循环过程中并不与中间的类内体区室进行交流。

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