首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Alpha5GABAA receptor activity sets the threshold for long-term potentiation and constrains hippocampus-dependent memory.
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Alpha5GABAA receptor activity sets the threshold for long-term potentiation and constrains hippocampus-dependent memory.

机译:Alpha5GABAA受体活性设定了长期增强的阈值,并限制了海马依赖性记忆。

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Synaptic plasticity, which is the neuronal substrate for many forms of hippocampus-dependent learning, is attenuated by GABA type A receptor (GABA(A)R)-mediated inhibition. The prevailing notion is that a synaptic or phasic form of GABAergic inhibition regulates synaptic plasticity; however, little is known about the role of GABA(A)R subtypes that generate a tonic or persistent inhibitory conductance. We studied the regulation of synaptic plasticity by alpha5 subunit-containing GABA(A)Rs (alpha5GABA(A)Rs), which generate a tonic inhibitory conductance in CA1 pyramidal neurons using electrophysiological recordings of field and whole-cell potentials in hippocampal slices from both wild-type and null mutant mice for the alpha5 subunit of the GABA(A)R (Gabra5(-/-) mice). In addition, the strength of fear-associated memory was studied. The results showed that alpha5GABA(A)R activity raises the threshold for induction of long-term potentiation in a highly specific band of stimulation frequencies (10-20 Hz) through mechanisms that are predominantly independent of inhibitory synaptic transmission. The deletion or pharmacological inhibition of alpha5GABA(A)Rs caused no change in baseline membrane potential or input resistance but increased depolarization during 10 Hz stimulation. The encoding of hippocampus-dependent memory was regulated by alpha5GABA(A)Rs but only under specific conditions that generate moderate but not robust forms of fear-associated learning. Thus, under specific conditions, alpha5GABA(A)R activity predominates over synaptic inhibition in modifying the strength of both synaptic plasticity in vitro and certain forms of memory in vivo.
机译:突触可塑性是海马依赖学习的许多形式的神经元底物,被GABA A型受体(GABA(A)R)介导的抑制作用减弱。普遍的观点是,GABA能抑制的突触或阶段性形式调节突触可塑性。然而,对于产生补品或持续抑制性电导的GABA(A)R亚型的作用了解甚少。我们研究了包含α5亚基的GABA(A)Rs(alpha5GABA(A)Rs)对突触可塑性的调节,该蛋白利用场和全海马电位的电生理学记录在CA1锥体神经元中产生了抑制性电导GABA(A)R alpha5亚基的野生型和无效突变小鼠(Gabra5(-/-)小鼠)。此外,研究了恐惧相关记忆的强度。结果表明,α5GABA(A)R活性通过主要独立于抑制性突触传递的机制,在高度特定的刺激频率带(10-20 Hz)中提高了诱导长期增强的阈值。 α5GABA(A)Rs的缺失或药理抑制作用不会引起基线膜电位或输入电阻的变化,但会在10 Hz刺激过程中增加去极化作用。海马依赖性记忆的编码受alpha5GABA(A)Rs调节,但仅在特定条件下产生与恐惧有关的学习的中度但不鲁棒的形式。因此,在特定条件下,α5GABA(A)R活性在改变突触可塑性在体外和体内某些形式的记忆强度方面均优于突触抑制。

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