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抑制突触后 Kv7/KCNQ/M 通道促进海马体长时程增强。

Inhibition of post-synaptic Kv7/KCNQ/M channels facilitates long-term potentiation in the hippocampus.

机构信息

Medical Research Council Centre for Synaptic Plasticity, School of Physiology and Pharmacology, University of Bristol, Bristol, United Kingdom.

出版信息

PLoS One. 2012;7(2):e30402. doi: 10.1371/journal.pone.0030402. Epub 2012 Feb 13.

Abstract

Activation of muscarinic acetylcholine receptors (mAChR) facilitates the induction of synaptic plasticity and enhances cognitive function. In the hippocampus, M(1) mAChR on CA1 pyramidal cells inhibit both small conductance Ca(2+)-activated KCa2 potassium channels and voltage-activated Kv7 potassium channels. Inhibition of KCa2 channels facilitates long-term potentiation (LTP) by enhancing Ca(2+)calcium influx through postsynaptic NMDA receptors (NMDAR). Inhibition of Kv7 channels is also reported to facilitate LTP but the mechanism of action is unclear. Here, we show that inhibition of Kv7 channels with XE-991 facilitated LTP induced by theta burst pairing at Schaffer collateral commissural synapses in rat hippocampal slices. Similarly, negating Kv7 channel conductance using dynamic clamp methodologies also facilitated LTP. Negation of Kv7 channels by XE-991 or dynamic clamp did not enhance synaptic NMDAR activation in response to theta burst synaptic stimulation. Instead, Kv7 channel inhibition increased the amplitude and duration of the after-depolarisation following a burst of action potentials. Furthermore, the effects of XE-991 were reversed by re-introducing a Kv7-like conductance with dynamic clamp. These data reveal that Kv7 channel inhibition promotes NMDAR opening during LTP induction by enhancing depolarisation during and after bursts of postsynaptic action potentials. Thus, during the induction of LTP M(1) mAChRs enhance NMDAR opening by two distinct mechanisms namely inhibition of KCa2 and Kv7 channels.

摘要

毒蕈碱型乙酰胆碱受体(mAChR)的激活促进了突触可塑性的诱导,并增强了认知功能。在海马体中,CA1 锥体神经元上的 M1 mAChR 抑制小电导钙激活钾通道(KCa2 通道)和电压激活的 Kv7 钾通道。KCa2 通道的抑制通过增强突触后 NMDA 受体(NMDAR)的钙内流来促进长时程增强(LTP)。据报道,Kv7 通道的抑制也有助于 LTP,但作用机制尚不清楚。在这里,我们显示,使用 XE-991 抑制 Kv7 通道可促进在大鼠海马切片中的 Schaffer 侧支联合突触处由 theta 爆发对联合诱发的 LTP。同样,使用动态钳夹方法否定 Kv7 通道电导也可促进 LTP。XE-991 或动态钳夹否定 Kv7 通道不会增强 theta 爆发突触刺激下的突触 NMDAR 激活。相反,Kv7 通道抑制增加了动作电位爆发后的去极化的幅度和持续时间。此外,XE-991 的作用可通过动态钳夹重新引入 Kv7 样电导来逆转。这些数据表明,Kv7 通道抑制通过在突触后动作电位爆发期间和之后增强去极化来促进 LTP 诱导期间的 NMDAR 开放。因此,在 LTP 的诱导过程中,M1 mAChR 通过两种不同的机制增强 NMDAR 的开放,即抑制 KCa2 和 Kv7 通道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7dd9/3278412/f5332760d87b/pone.0030402.g001.jpg

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