首页> 外文期刊>The Journal of Physiology >Postsynaptic expression of long-term potentiation in the rat dentate gyrus demonstrated by variance-mean analysis.
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Postsynaptic expression of long-term potentiation in the rat dentate gyrus demonstrated by variance-mean analysis.

机译:通过方差均值分析证明了大鼠齿状回中长期增强的突触后表达。

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1. Long-term potentiation (LTP) of synaptic transmission is the putative mechanism underlying learning and memory. Despite intensive study, it remains controversial whether LTP is expressed at a pre- or postsynaptic locus. A new approach was used to investigate this question at excitatory synapses from the medial perforant path (MPP) onto granule cells in the hippocampal dentate gyrus. The variance of the evoked synaptic amplitude was plotted against mean synaptic amplitude at several different Cd2+ concentrations. The slope of the variance-mean plot estimates the average amplitude of the response following the release of a single vesicle of transmitter (Qav). A presynaptic modulation should not affect Qav, but a postsynaptic modulation should alter it. 2. The variance-mean technique was tested by applying the analysis before and after three different synaptic modulations: (i) a reduction in Qav by the addition of the competitive antagonist CNQX; (ii) a reduction in the average probability of transmitter release (Pav) by the addition of baclofen; and (iii) an increase in the number of active synaptic terminals (N) by increasing the stimulus strength. CNQX reduced the average synaptic amplitude and Qav to the same extent, consistent with a postsynaptic action. In contrast, neither a change in N nor Pav altered Qav. This confirms that the variance-mean technique can distinguish between a pre- and a postsynaptic site of modulation. 3. Induction of LTP increased EPSC amplitude by 50 +/- 0.4 % (n = 5) and, in the same cells, increased Qav by 47 +/- 0.6 %. There was no significant difference between the increase in EPSC amplitude and the increase in Qav. Thus, LTP of the MPP input to dentate granule cells can be explained by an increase in the postsynaptic response to transmitter.
机译:1.突触传递的长期增强(LTP)是潜在的学习和记忆机制。尽管进行了深入研究,但是否在突触前或突触后基因座表达LTP仍存在争议。一种新的方法被用来研究从内侧穿孔路径(MPP)到海马齿状回的颗粒细胞的兴奋性突触中的这个问题。将诱发的突触振幅的方差相对于几种不同Cd2 +浓度下的平均突触振幅作图。方差平均图的斜率估计释放单个囊泡(Qav)后响应的平均幅度。突触前的调制不应影响Qav,但突触后的调制应改变它。 2.通过在三种不同的突触调节之前和之后进行分析来测试方差均值技术:(i)通过加入竞争性拮抗剂CNQX降低Qav; (ii)通过添加巴氯芬来降低平均释放递质的可能性; (iii)通过增加刺激强度来增加活性突触末端(N)的数量。 CNQX将平均突触幅度和Qav降低到相同程度,这与突触后作用一致。相反,N的变化或Pav均未改变Qav。这证实了方差均值技术可以区分突触前和突触后的调制位点。 3.诱导LTP使EPSC幅度增加50 +/- 0.4%(n = 5),并且在相同的细胞中,Qav增加47 +/- 0.6%。 EPSC幅度的增加和Qav的增加之间没有显着差异。因此,可以通过增加对递质的突触后反应来解释输入到齿状颗粒细胞的MPP的LTP。

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