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成年小鼠扣带回皮质中的长时程抑制需要突触后AMPA GluR2受体。

Long-term depression requires postsynaptic AMPA GluR2 receptor in adult mouse cingulate cortex.

作者信息

Toyoda Hiroki, Wu Long-Jun, Zhao Ming-Gao, Xu Hui, Jia Zhengping, Zhuo Min

机构信息

Department of Physiology, Faculty of Medicine, University of Toronto, Medical Science Building, 1 King's College Circle, Toronto, Ontario, Canada.

出版信息

J Cell Physiol. 2007 May;211(2):336-43. doi: 10.1002/jcp.20940.

Abstract

Synaptic long-term depression (LTD) is thought to be important for various brain functions such as learning, memory, and development. Although anterior cingulated cortex (ACC) has been demonstrated to contribute to learning and memory, no studies has been reported about the synaptic mechanisms for cingulate LTD. Here, we used integrative genetic, pharmacological and electrophysiological approaches to demonstrate that AMPA GluR2, but not GluR3, subunit is critical for cingulate LTD. We found that LTD was absent in adult cingulate slices of GluR2 knockout mice. Furthermore, postsynaptic injections of peptides that inhibit AMPA GluR2-PDZ interactions blocked the induction of LTD. To determine if the requirement for AMPA receptor-PDZ interaction is time-dependent, we injected the same inhibiting peptide into the postsynaptic cells 5 min after the induction of LTD. We found that LTD was not affected by the peptide, providing the first evidence that postsynaptic AMPA GluR2-mediated depression occurs rapidly (within t = 5 min). Genetic deletion of GluR3 did not affect cingulate LTD. Our results provide the first study of cingulate LTD mechanism using whole-cell patch-clamp recording in adult cortical slices and demonstrate that postsynaptic AMPA GluR2 subunit is crucial for synaptic depression in the ACC of adult mice.

摘要

突触长期抑制(LTD)被认为对多种脑功能如学习、记忆和发育很重要。尽管已证明前扣带回皮质(ACC)对学习和记忆有贡献,但尚未有关于扣带回LTD突触机制的研究报道。在此,我们使用综合的遗传学、药理学和电生理学方法来证明AMPA GluR2亚基而非GluR3亚基对扣带回LTD至关重要。我们发现GluR2基因敲除小鼠的成年扣带回切片中不存在LTD。此外,向突触后注射抑制AMPA GluR2 - PDZ相互作用的肽可阻断LTD的诱导。为了确定对AMPA受体 - PDZ相互作用的需求是否具有时间依赖性,我们在LTD诱导后5分钟向突触后细胞注射相同的抑制肽。我们发现LTD不受该肽的影响,这首次证明突触后AMPA GluR2介导的抑制迅速发生(在t = 5分钟内)。GluR3的基因缺失不影响扣带回LTD。我们的结果首次在成年皮质切片中使用全细胞膜片钳记录对扣带回LTD机制进行了研究,并证明突触后AMPA GluR2亚基对成年小鼠ACC中的突触抑制至关重要。

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