Chen Chu
Neuroscience Center, School of Medicine, Louisiana State University Health Sciences Center, 2020 Gravier Street, Suite D, New Orleans, LA 70112, USA.
Eur J Neurosci. 2004 Feb;19(3):643-9. doi: 10.1111/j.0953-816x.2003.03174.x.
Hyperpolarization-activated channels (Ih) are widely expressed in the nervous system and believed to play an important role in the regulation of membrane excitability and rhythmic activity. Recent evidence suggests that Ih may be involved in long-term potentiation (LTP) in the hippocampus; however, the results are controversial. To explore the possible causes of these differing results, the effects of Ih blockers on synaptic activity were evaluated in mouse hippocampal slices. ZD7288 (20 micro m), a selective Ih blocker, apparently prevented the induction of LTP, while Cs+ (1 mm), a commonly used Ih blocker, had no effect on LTP at hippocampal perforant path-dentate granule cell synapses. In addition, ZD7288 but not Cs+ abolished basal synaptic transmission. Results from voltage-clamp experiments showed that ZD7288 produced a very little inhibition on hyperpolarization-activated currents, indicating a weak expression of the Ih in granule neurons. Outside-out patch recordings revealed that ZD7288 inhibited glutamate receptor-mediated responses, while Cs+ had no effect on them. Meanwhile, ZD7288 reduced both alpha-amino-3-hydroxy-5-methylisoxazole-4-propionate and N-methyl-d-aspartate receptor-mediated excitatory postsynaptic currents. The results suggest that ZD7288-induced reduction of synaptic transmission may result from its inhibition of the postsynaptic glutamate receptors on dentate granule neurons.
超极化激活通道(Ih)在神经系统中广泛表达,并且被认为在调节膜兴奋性和节律性活动中发挥重要作用。最近的证据表明,Ih可能参与海马体中的长时程增强(LTP);然而,结果存在争议。为了探究这些不同结果的可能原因,在小鼠海马切片中评估了Ih阻滞剂对突触活动的影响。选择性Ih阻滞剂ZD7288(20微摩尔)明显阻止了LTP的诱导,而常用的Ih阻滞剂Cs +(1毫摩尔)对海马穿通路径-齿状颗粒细胞突触处的LTP没有影响。此外,ZD7288而非Cs +消除了基础突触传递。电压钳实验结果表明,ZD7288对超极化激活电流产生的抑制作用非常小,表明颗粒神经元中Ih的表达较弱。外向膜片钳记录显示,ZD7288抑制谷氨酸受体介导的反应,而Cs +对其没有影响。同时,ZD7288降低了α-氨基-3-羟基-5-甲基异恶唑-4-丙酸和N-甲基-D-天冬氨酸受体介导的兴奋性突触后电流。结果表明,ZD7288诱导的突触传递减少可能是由于其对齿状颗粒神经元突触后谷氨酸受体的抑制作用。