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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Ensemble and single particle fluorimetric techniques in concerted action to study the diffusion and aggregation of the glycine receptor α3 isoforms in the cell plasma membrane
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Ensemble and single particle fluorimetric techniques in concerted action to study the diffusion and aggregation of the glycine receptor α3 isoforms in the cell plasma membrane

机译:集合和单粒子荧光技术协同作用,研究甘氨酸受体α3亚型在细胞质膜中的扩散和聚集

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The spatio-temporal membrane behavior of glycine receptors (GlyRs) is known to be of influence on receptor homeostasis and functionality. In this work, an elaborate fluorimetric strategy was applied to study the GlyR α3K and L isoforms. Previously established differential clustering, desensitization and synaptic localization of these isoforms imply that membrane behavior is crucial in determining GlyR α3 physiology. Therefore diffusion and aggregation of homomeric α3 isoform-containing GlyRs were studied in HEK 293 cells. A unique combination of multiple diffraction-limited ensemble average methods and subdiffraction single particle techniques was used in order to achieve an integrated view of receptor properties. Static measurements of aggregation were performed with image correlation spectroscopy (ICS) and, single particle based, direct stochastic optical reconstruction microscopy (dSTORM). Receptor diffusion was measured by means of raster image correlation spectroscopy (RICS), temporal image correlation spectroscopy (TICS), fluorescence recovery after photobleaching (FRAP) and single particle tracking (SPT). The results show a significant difference in diffusion coefficient and cluster size between the isoforms. This reveals a positive correlation between desensitization and diffusion and disproves the notion that receptor aggregation is a universal mechanism for accelerated desensitization. The difference in diffusion coefficient between the clustering GlyR α3L and the non-clustering GlyR α3K cannot be explained by normal diffusion. SPT measurements indicate that the α3L receptors undergo transient trapping and directed motion, while the GlyR α3K displays mild hindered diffusion. These findings are suggestive of differential molecular interaction of the isoforms after incorporation in the membrane.
机译:已知甘氨酸受体(GlyRs)的时空膜行为会影响受体的稳态和功能。在这项工作中,采用了详尽的荧光分析策略来研究GlyRα3K和L同工型。先前建立的这些同工型的差异聚类,脱敏和突触定位表明,膜行为对于确定GlyRα3生理至关重要。因此,在HEK 293细胞中研究了含有同型α3同工型的GlyRs的扩散和聚集。为了获得受体特性的完整视图,使用了多种衍射受限的集合平均方法和亚衍射单粒子技术的独特组合。使用图像相关光谱(ICS)和基于单粒子的直接随机光学重建显微镜(dSTORM)进行聚集的静态测量。通过光栅图像相关光谱法(RICS),时间图像相关光谱法(TICS),光致漂白后的荧光恢复(FRAP)和单粒子跟踪(SPT)测量受体扩散。结果显示同工型之间扩散系数和簇大小的显着差异。这揭示了脱敏和扩散之间的正相关性,并驳斥了受体聚集是加速脱敏的普遍机制的观点。聚簇GlyRα3L和非聚簇GlyRα3K之间的扩散系数差异不能用正态扩散来解释。 SPT测量表明,α3L受体经历瞬时捕获和定向运动,而GlyRα3K表现出轻微的受阻扩散。这些发现暗示了同种型掺入膜后分子之间的差异分子相互作用。

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