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Muscarinic acetylcholine receptor activation prevents disinhibition-mediated LTP in the hippocampus

机译:毒蕈碱乙酰胆碱受体激活可防止海马中抑制抑制介导的LTP

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摘要

Disinhibition-mediated long-term potentiation (LTP) in the CA1 region of the hippocampus involves GABAergic synaptic plasticity at feedforward inhibitory inputs, resulting in the reduced shunting of glutamatergic excitatory currents. The GABAergic plasticity which underlies disinhibition-mediated LTP results from a Ca2+-dependent decrease in the activity of the K+–Cl cotransporter (KCC2), depolarizing the reversal potential for GABAA receptor-mediated currents (EGABA), thereby attenuating inhibition. Muscarinic acetylcholine receptor (mAChR) activation has previously been shown to regulate classic glutamatergic LTP, modulate intracellular [Ca2+] and signaling, and facilitate the excitability of GABAergic interneurons in the CA1. Based on these effects, and the ability of mAChR activation to regulate CA1 pyramidal neuron KCC2 expression, we proposed that mAChR activation would modulate disinhibition-mediated LTP. To test this prediction, we made whole cell recordings from CA1 pyramidal neurons in hippocampal slices. Disinhibition-mediated LTP was induced using a spike timing-dependent plasticity (STDP) protocol, which involved coincident pre-synaptic stimulation and post-synaptic current injection (at 5 Hz for 60 s). We found that mAChR activation via carbachol (CCh) prevented the induction of disinhibition-mediated LTP. Moreover, in the presence of CCh, EGABA failed to depolarize following plasticity induction. Lastly, we recorded the paired-pulse ratio (PPR) during the induction of disinhibition-mediated LTP and found that in the presence of CCh, plasticity induction induced a significant paired-pulse depression. This suggests that pre-synaptic mAChR activation may prevent the post-synaptic expression of disinhibition-mediated LTP.
机译:海马CA1区的抑制抑制介导的长期增强(LTP)涉及前馈抑制输入时的GABA能突触可塑性,导致谷氨酸能兴奋性电流的分流减少。 Ca 2 + 依赖的K + -Cl -共转运蛋白活性下降导致的GABA能可塑性是抑制抑制介导的LTP的基础(KCC2),可消除GABAA受体介导的电流(EGABA)的逆转电位,从而减弱抑制作用。毒蕈碱乙酰胆碱受体(mAChR)的激活以前已被证明可以调节经典的谷氨酸能LTP,调节细胞内[Ca 2 + ]和信号传导,并促进CA1中GABA能性神经元的兴奋性。基于这些效应,以及mAChR激活调节CA1锥体神经元KCC2表达的能力,我们提出mAChR激活将调节去抑制介导的LTP。为了验证这一预测,我们从海马切片中的CA1锥体神经元中录制了全细胞。使用抑制时间介导的可塑性(STDP)协议诱导去抑制介导的LTP,该协议涉及同时的突触前刺激和突触后电流注入(在5 Hz下持续60 s)。我们发现通过乙酰胆碱(CCh)的mAChR激活阻止了去抑制介导的LTP的诱导。此外,在存在CCh的情况下,EGABA在诱导可塑性后未能去极化。最后,我们在诱导去抑制介导的LTP期间记录了成对脉冲比率(PPR),发现在CCh的存在下,可塑性诱导引起了显着的成对脉冲抑制。这表明突触前的mAChR激活可能阻止去抑制介导的LTP的突触后表达。

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