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大鼠体感皮层中触须剥夺诱导的突触抑制的突触基础

Synaptic basis for whisker deprivation-induced synaptic depression in rat somatosensory cortex.

作者信息

Bender Kevin J, Allen Cara B, Bender Vanessa A, Feldman Daniel E

机构信息

Division of Biological Sciences, University of California San Diego, La Jolla, California 92093-0357, USA.

出版信息

J Neurosci. 2006 Apr 19;26(16):4155-65. doi: 10.1523/JNEUROSCI.0175-06.2006.

DOI:10.1523/JNEUROSCI.0175-06.2006
PMID:16624936
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3070309/
Abstract

Whisker deprivation weakens excitatory layer 4 (L4) inputs to L2/3 pyramidal cells in rat primary somatosensory (S1) cortex, which is likely to contribute to whisker map plasticity. This weakening has been proposed to represent long-term depression (LTD) induced by sensory deprivation in vivo. Here, we studied the synaptic expression mechanisms for deprivation-induced weakening of L4-L2/3 inputs and assessed its similarity to LTD, which is known to be expressed presynaptically at L4-L2/3 synapses. Whisker deprivation increased the paired pulse ratio at L4-L2/3 synapses and slowed the use-dependent block of NMDA receptor currents by MK-801 [(5S,10R)-(+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d]cyclohepten-5,10-imine maleate], indicating that deprivation reduced transmitter release probability at these synapses. In contrast, deprivation did not alter either miniature EPSC amplitude in L2/3 neurons or the amplitude of quantal L4-L2/3 synaptic responses measured in strontium, indicating that postsynaptic responsiveness was unchanged. In young postnatal day 12 (P12) rats, at least 4 d of deprivation were required to significantly weaken L4-L2/3 synapses. Similar weakening occurred when deprivation began at older ages (P20), when synapses are mostly mature, indicating that weakening is unlikely to represent a failure of synaptic maturation but instead represents a reduction in the strength of existing synapses. Thus, whisker deprivation weakens L4-L2/3 synapses by decreasing presynaptic function, similar to known LTD mechanisms at this synapse.

摘要

触须剥夺会削弱大鼠初级体感(S1)皮层中第4层(L4)对第2/3层锥体神经元的兴奋性输入,这可能有助于触须图谱的可塑性。有人提出这种削弱代表了体内感觉剥夺诱导的长时程抑制(LTD)。在这里,我们研究了剥夺诱导的L4-L2/3输入减弱的突触表达机制,并评估了其与LTD的相似性,已知LTD在L4-L2/3突触处是通过突触前表达的。触须剥夺增加了L4-L2/3突触处的配对脉冲比率,并减缓了MK-801 [(5S,10R)-(+)-5-甲基-10,11-二氢-5H-二苯并[a,d]环庚烯-5,10-亚胺马来酸盐]对NMDA受体电流的使用依赖性阻断,表明剥夺降低了这些突触处的递质释放概率。相比之下,剥夺既没有改变L2/3神经元中的微小兴奋性突触后电流(mEPSC)幅度,也没有改变在锶中测量的L4-L2/3突触量子反应的幅度,表明突触后反应性没有变化。在出生后第12天(P12)的幼鼠中,至少需要4天的剥夺才能显著减弱L4-L2/3突触。当剥夺在较大年龄(P20)开始时也会发生类似的减弱,此时突触大多已经成熟,这表明减弱不太可能代表突触成熟失败,而是代表现有突触强度的降低。因此,触须剥夺通过降低突触前功能来减弱L4-L2/3突触,这与该突触处已知的LTD机制相似。