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Super-resolution Imaging Reveals the Internal Architecture of Nano-sized Syntaxin Clusters

机译:超分辨率成像揭示了纳米大小的Syntaxin簇的内部体系结构

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摘要

Key synaptic proteins from the soluble SNARE (N-ethylmaleimide-sensitive factor attachment protein receptor) family, among many others, are organized at the plasma membrane of cells as clusters containing dozens to hundreds of protein copies. However, the exact membranal distribution of proteins into clusters or as single molecules, the organization of molecules inside the clusters, and the clustering mechanisms are unclear due to limitations of the imaging and analytical tools. Focusing on syntaxin 1 and SNAP-25, we implemented direct stochastic optical reconstruction microscopy together with quantitative clustering algorithms to demonstrate a novel approach to explore the distribution of clustered and nonclustered molecules at the membrane of PC12 cells with single-molecule precision. Direct stochastic optical reconstruction microscopy images reveal, for the first time, solitary syntaxin/SNAP-25 molecules and small clusters as well as larger clusters. The nonclustered syntaxin or SNAP-25 molecules are mostly concentrated in areas adjacent to their own clusters. In the clusters, the density of the molecules gradually decreases from the dense cluster core to the periphery. We further detected large clusters that contain several density gradients. This suggests that some of the clusters are formed by unification of several clusters that preserve their original organization or reorganize into a single unit. Although syntaxin and SNAP-25 share some common distributional features, their clusters differ markedly from each other. SNAP-25 clusters are significantly larger, more elliptical, and less dense. Finally, this study establishes methodological tools for the analysis of single-molecule-based super-resolution imaging data and paves the way for revealing new levels of membranal protein organization.
机译:来自可溶性SNARE(N-乙基马来酰亚胺敏感因子附着蛋白受体)家族的关键突触蛋白,在细胞质膜上组织成簇,包含数十至数百个蛋白拷贝。然而,由于成像和分析工具的局限性,目前尚不清楚蛋白质在膜中的确切分布是作为簇还是作为单个分子,簇中分子的组织以及簇的机制尚不清楚。专注于syntaxin 1和SNAP-25,我们实现了直接随机光学重建显微镜以及定量聚类算法,以展示一种新颖的方法来以单分子精度探索聚簇和非聚簇分子在PC12细胞膜上的分布。直接随机光学重建显微图像首次揭示了单独的语法/ SNAP-25分子和小簇以及大簇。非聚集的syntaxin或SNAP-25分子大多集中在与其自身簇相邻的区域。在簇中,分子的密度从密集的簇核心到外围逐渐降低。我们进一步检测到包含多个密度梯度的大型簇。这表明某些集群是由几个集群的统一形成的,这些集群保留了其原始组织或重组为一个单元。尽管语法和SNAP-25具有一些共同的分布特征,但它们的簇彼此之间明显不同。 SNAP-25簇明显更大,更椭圆且密度更低。最后,本研究建立了用于分析基于单分子的超分辨率成像数据的方法学工具,并为揭示新的膜蛋白组织水平铺平了道路。

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