Department of Life Sciences, The Open University, Milton Keynes, UK.
Neuroscience. 2010 Dec 1;171(2):390-7. doi: 10.1016/j.neuroscience.2010.09.014. Epub 2010 Sep 17.
Alterations in curvature of the post synaptic density (PSD) and apposition zone (AZ), are believed to play an important role in determining synaptic efficacy. In the present study we have examined curvature of PSDs and AZs 24 h following homosynaptic long-term potentiation (LTP), and heterosynaptic long-term depression (LTD) in vivo, in awake adult rats. High frequency stimulation (HFS) applied to the medial perforant path to the dentate gyrus induced LTP while HFS stimulation of the lateral perforant path induced LTD in the middle molecular layer of the dentate gyrus (DG). Curvature changes were analysed in this area using three dimensional (3-D) reconstructions of electron microscope images of ultrathin serial sections. Very large and significant changes in 3-D measurements of AZ and PSD curvature occurred 24 h following both LTP and LTD, with a flattening of the normal concavity of mushroom spine heads and a change to convexity for thin spines. An N-methyl-D-aspartate (NMDA) receptor antagonist CPP (3-[(R)-2-Carboxypiperazin-4-yl]-propyl-1-phosphonic acid) blocked the changes in curvature of mushroom and thin spine PSDs and apposition zones, actually increasing the concavity of mushroom spines as the spine engulfed the presynaptic bouton. In order to establish whether these changes resulted from the effect of the NMDA antagonist or from its coincidence with synaptic activation during testing we examined the effects of CPP alone on PSD and apposition zone curvature. It was found that CPP alone also caused a small decrease in curvature of both PSD and apposition zone of mushroom and thin spines.
突触后密度(PSD)和附接区(AZ)曲率的改变被认为在决定突触效能方面起着重要作用。在本研究中,我们检查了清醒成年大鼠体内同源长时程增强(LTP)和异源长时程抑制(LTD)后 24 小时 PSD 和 AZ 的曲率。高频刺激(HFS)施加到内侧穿通路径到齿状回诱导 LTP,而 HFS 刺激外侧穿通路径诱导齿状回(DG)中间分子层中的 LTD。使用超微切片的三维(3-D)重建对该区域的曲率变化进行了分析。在 LTP 和 LTD 之后 24 小时,AZ 和 PSD 曲率的 3-D 测量发生了非常大且显著的变化,蘑菇形棘突头部的正常凹度变平,而薄棘突的曲率变为凸度。N-甲基-D-天冬氨酸(NMDA)受体拮抗剂 CPP(3-[(R)-2-羧基哌嗪-4-基]-丙基-1-膦酸)阻断了蘑菇和薄棘突 PSD 和附接区曲率的变化,实际上增加了蘑菇棘突的凹度,因为棘突包围了突触前末梢。为了确定这些变化是由于 NMDA 拮抗剂的作用还是由于其与测试期间的突触激活巧合,我们检查了 CPP 单独对 PSD 和附接区曲率的影响。结果发现,CPP 单独也导致蘑菇和薄棘突 PSD 和附接区曲率的微小减小。