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AMPA-receptor activation regulates the diffusion of a membrane marker in parallel with dendritic spine motility in the mouse hippocampus

机译:AMPA受体激活与小鼠海马中树突棘活动并行地调节膜标志物的扩散

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摘要

Dendritic spines are the site of most excitatory connections in the hippocampus. We have investigated the diffusibility of a membrane-bound green fluorescent protein (mGFP) within the inner leaflet of the plasma membrane using Fluorescence Recovery After Photobleaching. In dendritic spines the diffusion of mGFP was significantly retarded relative to the dendritic shaft. In parallel, we have assessed the motility of dendritic spines, and found an inverse correlation between spine motility and the rate of diffusion of mGFP. We then tested the influence of glutamate receptor activation or blockade, and the involvement of the actin cytoskeleton (using latrunculin A) on spine motility and mGFP diffusion. These results show that glutamate receptors regulate the mobility of molecules in the inner leaflet of the plasma membrane through an action upon the actin cytoskeleton, suggesting a novel mechanism for the regulation of postsynaptic receptor density and composition.
机译:树突棘是海马中大多数兴奋性连接的部位。我们已经研究了使用光漂白后的荧光回收法,在质膜内小叶内与膜结合的绿色荧光蛋白(mGFP)的扩散性。在树突棘中,相对于树突柄,mGFP的扩散明显受阻。同时,我们评估了树突棘的运动能力,并发现脊柱运动能力与mGFP的扩散速率呈负相关。然后,我们测试了谷氨酸受体激活或阻断的影响,以及肌动蛋白细胞骨架(使用latrunculin A)对脊柱运动和mGFP扩散的影响。这些结果表明,谷氨酸受体通过对肌动蛋白细胞骨架的作用来调节质膜内小叶中分子的迁移,提示了调节突触后受体密度和组成的新机制。

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