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Dendritic Spine Morphology Determines Membrane-Associated Protein Exchange between Dendritic Shafts and Spine Heads

机译:树突状脊柱形态决定了树突状轴与脊柱头之间的膜相关蛋白交换

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摘要

The purpose of this study was to examine whether variability in the shape of dendritic spines affects protein movement within the plasma membrane. Using a combination of confocal microscopy and the fluorescence loss in photobleaching technique in living hippocampal CA1 pyramidal neurons expressing membrane-linked GFP, we observed a clear correlation between spine shape parameters and the diffusion and compartmentalization of membrane-associated proteins. The kinetics of membrane-linked GFP exchange between the dendritic shaft and the spine head compartment were slower in dendritic spines with long necks and/or large heads than in those with short necks and/or small heads. Furthermore, when the spine area was reduced by eliciting epileptiform activity, the kinetics of protein exchange between the spine compartments exhibited a concomitant decrease. As synaptic plasticity is considered to involve the dynamic flux by lateral diffusion of membrane-bound proteins into and out of the synapse, our data suggest that spine shape represents an important parameter in the susceptibility of synapses to undergo plastic change
机译:这项研究的目的是检查树突棘形状的变化是否影响质膜内的蛋白质运动。使用共聚焦显微镜和光漂白技术在表达膜连接的GFP的活海马CA1锥体神经元中荧光损失的组合,我们观察到脊柱形状参数与膜相关蛋白的扩散和区室化之间存在明显的相关性。在长颈和/或大头的树突棘中,与短颈和/或小头的树突棘相比,树突状干和脊柱头腔之间的膜联GFP交换动力学较慢。此外,当通过激发癫痫样活动而减少脊柱面积时,在脊柱区室之间的蛋白质交换动力学表现出相应的下降。由于突触可塑性被认为涉及膜结合蛋白横向扩散进入和流出突触的动态通量,因此我们的数据表明,脊柱形状代表突触易受塑性变化的重要参数。

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