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海马代谢型谷氨酸受体依赖性长时程抑制突触机制中的发育性转变

Developmental switch in synaptic mechanisms of hippocampal metabotropic glutamate receptor-dependent long-term depression.

作者信息

Nosyreva Elena D, Huber Kimberly M

机构信息

Center for Basic Neuroscience, Department of Physiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9111, USA.

出版信息

J Neurosci. 2005 Mar 16;25(11):2992-3001. doi: 10.1523/JNEUROSCI.3652-04.2005.

Abstract

The presynaptic and postsynaptic properties of synapses change over the course of postnatal development. Therefore, synaptic plasticity mechanisms would be expected to adapt to these changes to facilitate alterations of synaptic strength throughout ontogeny. Here, we identified developmental changes in long-term depression (LTD) mediated by group 1 metabotropic glutamate receptors (mGluRs) and dendritic protein synthesis in hippocampal CA1 slices (mGluR-LTD). In slices prepared from adolescent rats [postnatal day 21 (P21) to P35], mGluR activation induces LTD and a long-term decrease in AMPA receptor (AMPAR) surface expression, both of which require protein synthesis. In neonatal animals (P8-P15), mGluR-LTD is independent of protein synthesis and is not associated with changes in the surface expression of AMPARs. Instead, mGluR-LTD at neonatal synapses results in large decreases in presynaptic function, measured by changes in paired-pulse facilitation and the rate of blockade by the use-dependent NMDA receptor blocker (+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imine maleate. Conversely, mGluR-LTD at mature synapses results in little or no change in presynaptic function, suggesting a postsynaptic mechanism of expression. The developmental switch in the synaptic mechanisms of LTD would differentially affect synapse dynamics and perhaps information processing over the course of postnatal development.

摘要

突触的突触前和突触后特性在出生后的发育过程中会发生变化。因此,预计突触可塑性机制会适应这些变化,以促进整个个体发育过程中突触强度的改变。在这里,我们确定了由1型代谢型谷氨酸受体(mGluRs)介导的海马CA1切片中的长时程抑制(LTD)和树突蛋白合成(mGluR-LTD)的发育变化。在从青春期大鼠[出生后第21天(P21)至P35]制备的切片中,mGluR激活诱导LTD以及AMPA受体(AMPAR)表面表达的长期降低,这两者都需要蛋白质合成。在新生动物(P8-P15)中,mGluR-LTD不依赖于蛋白质合成,并且与AMPARs的表面表达变化无关。相反,新生突触处的mGluR-LTD导致突触前功能大幅下降,通过配对脉冲易化变化和使用依赖性NMDA受体阻滞剂(+)-5-甲基-10,11-二氢-5H-二苯并[a,d]环庚烯-5,10-亚胺马来酸盐的阻断率来衡量。相反,成熟突触处的mGluR-LTD导致突触前功能几乎没有变化,提示存在一种突触后表达机制。LTD突触机制的发育转变可能会在出生后发育过程中对突触动态以及可能的信息处理产生不同影响。

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