Department of Biology, Brandeis University, Waltham, MA 02453.
Department of Mathematics, Brandeis University, Waltham, MA 02453.
Mol Biol Cell. 2023 May 15;34(6):ar51. doi: 10.1091/mbc.E22-08-0372. Epub 2022 Dec 21.
Following exocytosis at active zones, synaptic vesicle membranes and membrane-bound proteins must be recycled. The endocytic machinery that drives this recycling accumulates in the periactive zone (PAZ), a region of the synapse adjacent to active zones, but the organization of this machinery within the PAZ, and how PAZ composition relates to active zone release properties, remains unknown. The PAZ is also enriched for cell adhesion proteins, but their function at these sites is poorly understood. Here, using Airyscan and stimulated emission depletion imaging of synapses, we develop a quantitative framework describing the organization and ultrastructure of the PAZ. Different endocytic proteins localize to distinct regions of the PAZ, suggesting that subdomains are specialized for distinct biochemical activities, stages of membrane remodeling, or synaptic functions. We find that the accumulation and distribution of endocytic but not adhesion PAZ proteins correlate with the abundance of the scaffolding protein Bruchpilot at active zones-a structural correlate of release probability. These data suggest that endocytic and exocytic activities are spatially correlated. Taken together, our results identify novel relationships between the exocytic and endocytic apparatus at the synapse and provide a new conceptual framework to quantify synaptic architecture.
在活性区的胞吐作用之后,突触小泡膜和膜结合蛋白必须被回收。驱动这种回收的内吞机制在活性区附近的突触旁区(PAZ)中积累,但该机制在 PAZ 中的组织方式,以及 PAZ 组成与活性区释放特性的关系尚不清楚。PAZ 还富含细胞粘附蛋白,但它们在这些部位的功能知之甚少。在这里,我们使用 Airyscan 和突触的受激发射损耗成像,开发了一个定量框架来描述 PAZ 的组织和超微结构。不同的内吞蛋白定位于 PAZ 的不同区域,这表明亚域专门用于不同的生化活性、膜重塑阶段或突触功能。我们发现,内吞但不是粘附 PAZ 蛋白的积累和分布与活性区支架蛋白 Bruchpilot 的丰度相关——这是释放概率的结构相关物。这些数据表明内吞和胞吐活动在空间上是相关的。总之,我们的结果确定了突触处胞吐和胞吞装置之间的新关系,并提供了量化突触结构的新概念框架。