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硫酸孕烯醇酮增强海马CA1突触处不依赖N-甲基-D-天冬氨酸受体的长时程增强:L型钙通道和σ受体的作用

Steroid pregnenolone sulfate enhances NMDA-receptor-independent long-term potentiation at hippocampal CA1 synapses: role for L-type calcium channels and sigma-receptors.

作者信息

Sabeti Jilla, Nelson Thomas E, Purdy Robert H, Gruol Donna L

机构信息

Molecular and Integrative Neurosciences Department (MIND), The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Hippocampus. 2007;17(5):349-69. doi: 10.1002/hipo.20273.

Abstract

Severe stress elevates plasma and CNS levels of endogenous neuroactive steroids that can contribute to the influence of stress on memory formation. Among the neuroactive steroids, pregnenolone sulfate (PREGS) reportedly strengthens memories and is readily available as a memory-enhancing supplement. PREGS actions on memory may reflect its ability to produce changes in memory-related neuronal circuits, such as long-term potentiation (LTP) of excitatory transmission in hippocampus. Here, we report a previously undiscovered pathway by which PREGS exposure promotes activity-dependent LTP of field excitatory postsynaptic potentials at CA1 synapses in hippocampal slices. Thus, application of PREGS, but not the phosphated conjugate of the steroid, selectively facilitates the induction of a slow-developing LTP in response to high-frequency (100 Hz) afferent stimulation, which is not induced in the absence of the steroid. The slow-developing LTP is independent of NMDA-receptor function (i.e., dAP5 insensitive) but dependent on functional L-type voltage-gated calcium channels (VGCC) and sigma-receptors. By contrast, PREGS at the highest concentration tested produces a depression in NMDA-receptor-dependent LTP, which is evident when sigma-receptor function is compromised by the presence of a sigma-receptor antagonist. We found that at early times during the induction phase of L-type VGCC-dependent LTP, PREGS via sigma-receptors transiently enhances presynaptic function. As well, during the maintenance phase of L-type VGCC-dependent LTP, PREGS promotes a further increase in presynaptic function downstream of LTP induction, as evidenced by a decrease in paired-pulse facilitation. The identification of complex regulatory actions of PREGS on LTP, involving sigma-receptors, L-type VGCCs, NMDA-receptors, and inhibitory circuits will aid future research endeavors aimed at understanding the precise mechanisms by which this stress-associated steroid may engage multiple LTP-signaling pathways that alter synaptic transmission at memory-related synapses.

摘要

严重应激会升高内源性神经活性甾体的血浆和中枢神经系统水平,这些甾体可能会影响应激对记忆形成的作用。在神经活性甾体中,硫酸孕烯醇酮(PREGS)据报道可增强记忆,并且作为一种增强记忆的补充剂很容易获得。PREGS对记忆的作用可能反映了其在与记忆相关的神经回路中产生变化的能力,例如海马体中兴奋性传递的长时程增强(LTP)。在此,我们报告了一条此前未被发现的途径,即暴露于PREGS可促进海马切片CA1突触处场兴奋性突触后电位的活动依赖性LTP。因此,应用PREGS而非该甾体的磷酸化共轭物,可选择性地促进在高频(100 Hz)传入刺激下缓慢发展的LTP的诱导,在没有该甾体的情况下则不会诱导这种LTP。这种缓慢发展的LTP不依赖于NMDA受体功能(即对dAP5不敏感),但依赖于功能性L型电压门控钙通道(VGCC)和σ受体。相比之下,在测试的最高浓度下,PREGS会导致NMDA受体依赖性LTP受到抑制,当σ受体功能因σ受体拮抗剂的存在而受损时,这种抑制作用很明显。我们发现,在L型VGCC依赖性LTP诱导阶段的早期,PREGS通过σ受体短暂增强突触前功能。同样,在L型VGCC依赖性LTP的维持阶段,PREGS促进LTP诱导下游突触前功能的进一步增强,成对脉冲易化的降低证明了这一点。PREGS对LTP的复杂调节作用的鉴定,涉及σ受体、L型VGCC、NMDA受体和抑制性回路,将有助于未来旨在理解这种与应激相关的甾体可能参与多个LTP信号通路从而改变与记忆相关突触处突触传递的精确机制的研究工作。

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