量子分析揭示了来自大鼠新皮层的兴奋性连接中突触前和突触后效能之间的功能相关性。

Quantal analysis reveals a functional correlation between presynaptic and postsynaptic efficacy in excitatory connections from rat neocortex.

机构信息

The University Laboratory of Physiology, Oxford University, Oxford, OX1 3PT, United Kingdom.

出版信息

J Neurosci. 2010 Jan 27;30(4):1441-51. doi: 10.1523/JNEUROSCI.3244-09.2010.

Abstract

At many central synapses, the presynaptic bouton and postsynaptic density are structurally correlated. However, it is unknown whether this correlation extends to the functional properties of the synapses. To investigate this, we made recordings from synaptically coupled pairs of pyramidal neurons in rat visual cortex. The mean peak amplitude of EPSPs recorded from pairs of L2/3 neurons ranged between 40 microV and 2.9 mV. EPSP rise times were consistent with the majority of the synapses being located on basal dendrites; this was confirmed by full anatomical reconstructions of a subset of connected pairs. Over a third of the connections could be described using a quantal model that assumed simple binomial statistics. Release probability (P(r)) and quantal size (Q), as measured at the somatic recording site, showed considerable heterogeneity between connections. However, across the population of connections, values of P(r) and Q for individual connections were positively correlated with one another. This correlation also held for inputs to layer 5 pyramidal neurons from both layer 2/3 and neighboring layer 5 pyramidal neurons, suggesting that during development of cortical connections presynaptic and postsynaptic strengths are dependently scaled. For 2/3 to 2/3 connections, mean EPSP amplitude was correlated with both Q and P(r) values but uncorrelated with N, the number of functional release sites mediating the connection. The efficacy of a cortical connection is thus set by coordinated presynaptic and postsynaptic strength.

摘要

在许多中枢突触中,突触前末梢和突触后密度在结构上是相关的。然而,目前尚不清楚这种相关性是否延伸到突触的功能特性。为了研究这一点,我们对大鼠视觉皮层中突触偶联的锥体神经元对进行了记录。从 L2/3 神经元对记录的 EPSP 峰值幅度的平均值在 40 微伏到 2.9 毫伏之间。EPSP 上升时间与大多数突触位于基底树突上的情况一致;这通过对连接的神经元子集的完整解剖重建得到了证实。超过三分之一的连接可以用假设简单二项式统计的量子模型来描述。在躯体记录部位测量的释放概率 (P(r)) 和量子大小 (Q) 在连接之间表现出相当大的异质性。然而,在整个连接群体中,单个连接的 P(r) 和 Q 值彼此之间呈正相关。这种相关性也适用于来自 L2/3 和相邻 L5 锥体神经元的输入到 L5 锥体神经元的连接,这表明在皮层连接的发育过程中,突触前和突触后强度是相关的。对于 2/3 到 2/3 的连接,平均 EPSP 幅度与 Q 和 P(r) 值相关,但与介导连接的功能释放位点数量 N 无关。因此,皮质连接的效能是由协调的突触前和突触后强度决定的。

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