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Activity-dependent decrease in contact areas between subsurface cisterns and plasma membrane of hippocampal neurons

机译:依赖于活动的海马神经元地下池与质膜接触面积的减少

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摘要

Subsurface cistern (SSC) in neuronal soma and primary dendrites is a specialized compartment of endoplasmic reticulum (ER) that is in close apposition (10 nm) with the plasma membrane (PM). ER-PM contact areas are thought to be involved in intracellular calcium regulation. Here, structural changes of SSC in hippocampal neurons were examined by electron microscopy upon depolarization with high K+ (90 mM) or application of NMDA (50 μM) in rat dissociated cultures as well as organotypic slice cultures. The number and average length of SSC-PM contact areas in neuronal somas significantly decreased within 30 s under excitatory condition. This decrease in SSC-PM contact area progressed with time and was reversible. These results demonstrate a structural decoupling between the SSC and the PM upon stimulation, suggesting that there may be a functional decoupling of the calcium regulation. Because SSC-PM contact areas may mediate calcium influx, the decrease in contact area may protect neurons from calcium overload upon heightened stimulation.Electronic supplementary materialThe online version of this article (10.1186/s13041-018-0366-7) contains supplementary material, which is available to authorized users.
机译:神经体和原发性树突状细胞的下水箱(SSC)是内质网(ER)的专用隔室,与质膜(PM)紧密对置(10 nm)。 ER-PM接触区域被认为与细胞内钙调节有关。在这里,通过高倍K + (90mM)去极化或在大鼠离体培养以及器官切片培养中应用NMDA(50μM)去极化后,通过电子显微镜检查海马神经元SSC的结构变化。在兴奋状态下,神经元体中SSC-PM接触区域的数量和平均长度在30 s内显着下降。 SSC-PM接触面积的减少随时间推移而逐渐发展,并且是可逆的。这些结果证明了刺激后SSC和PM之间的结构解偶联,表明钙调节可能存在功能性解偶联。由于SSC-PM接触区域可能介导钙内流,因此接触区域的减少可以保护神经元免受刺激后钙超载的影响。电子补充材料本文的在线版本(10.1186 / s13041-018-0366-7)包含补充材料,其中适用于授权用户。

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