Institute of Physiology, University of Rostock, 18055 Rostock, Germany.
Learn Mem. 2009 Nov 25;16(12):769-76. doi: 10.1101/lm.1556009. Print 2009 Dec.
HCN channels play a fundamental role in determining resting membrane potential and regulating synaptic function. Here, we investigated the involvement of HCN channels in basal synaptic transmission and long-term depression (LTD) at the Schaffer collateral-CA1 synapse. Bath application of the HCN channel blocker ZD7288 (10 microM) caused a significant increase in synaptic transmission that was due to an enhancement in AMPA receptor-mediated excitatory postsynaptic potentials. This enhancement was accompanied by a significant decrease in the paired-pulse ratio (PPR), suggesting a presynaptic mechanism. Experiments with the irreversible use-dependent NMDA receptor blocker MK-801 showed that ZD7288 led to an increase in glutamate release probability. LTD induced by brief application of (RS)-3,5-dihydroxyphenylglycine (DHPG, 100 microM, 10 min) was significantly enhanced when HCN channels were blocked by ZD7288 (10 microM) prior to DHPG application. Moreover, the concomitant increase in PPR after DHPG-induced LTD was significantly larger than without ZD7288 bath application. Conversely, ZD7288 application after DHPG washout did not alter DHPG-LTD. A significant enhancement of DHPG-LTD was also observed in HCN1-deficient mice as compared with wild types. However, LTD induced by low-frequency stimulation (LFS) remained unaltered in HCN1-deficient mice, suggesting a differential effect of HCN1 channels on synaptic plasticity constraining DHPG-LTD, but not LFS-LTD.
HCN 通道在决定静息膜电位和调节突触功能方面起着至关重要的作用。在这里,我们研究了 HCN 通道在 Schaffer 侧枝-CA1 突触的基础突触传递和长时程抑制(LTD)中的作用。ZD7288(10 μM)作为 HCN 通道阻断剂的全细胞灌流给药会导致突触传递的显著增加,这是由于 AMPA 受体介导的兴奋性突触后电位增强所致。这种增强伴随着成对脉冲比(PPR)的显著降低,提示存在一种突触前机制。不可逆的 NMDA 受体阻断剂 MK-801 的实验表明,ZD7288 导致谷氨酸释放概率增加。当 HCN 通道在应用(RS)-3,5-二羟基苯甘氨酸(DHPG,100 μM,10 分钟)之前被 ZD7288(10 μM)阻断时,由短暂应用引起的 LTD 显著增强。此外,在 DHPG 诱导的 LTD 后 PPR 的协同增加明显大于没有 ZD7288 全细胞灌流的情况。相反,在 DHPG 洗脱后应用 ZD7288 并不改变 DHPG-LTD。与野生型相比,在 HCN1 缺陷型小鼠中也观察到 DHPG-LTD 的显著增强。然而,在 HCN1 缺陷型小鼠中,低频刺激(LFS)诱导的 LTD 仍然没有改变,这表明 HCN1 通道对限制 DHPG-LTD 的突触可塑性有不同的影响,但对 LFS-LTD 没有影响。