Morishima Mieko, Kawaguchi Yasuo
Division of Cerebral Circuitry, National Institute for Physiological Sciences, Department of Physiological Sciences, The Graduate University for Advanced Studies, Aichi, Okazaki 444-8787, Japan.
J Neurosci. 2006 Apr 19;26(16):4394-405. doi: 10.1523/JNEUROSCI.0252-06.2006.
Corticostriatal pyramidal cells are heterogeneous in the frontal cortex. Here, we show that subpopulations of corticostriatal neurons in the rat frontal cortex are selectively connected with each other based on their subcortical targets. Using paired recordings of retrogradely labeled cells, we investigated the synaptic connectivity between two projection cell types: those projecting to the pons [corticopontine (CPn) cell], often with collaterals to the striatum, and those projecting to both sides of the striatum but not to the pons [crossed corticostriatal (CCS) cell]. The two types were morphologically differentiated in regard to their apical tufts. The dendritic morphologies of CCS cells were correlated with their somatic depth within the cortex. CCS cells had reciprocal synaptic connections with each other and also provided synaptic input to CPn cells. However, connections from CPn to CCS cells were rarely found, even in pairs showing CCS to CPn connectivity. Additionally, CCS cells preferentially innervated the basal dendrites of other CCS cells but made contacts onto both the basal and apical dendrites of CPn cells. The amplitude of synaptic responses was to some extent correlated with the contact site number. Ratios of the EPSC amplitude to the contact number tended to be larger in the CCS to CCS connection. Therefore, our data demonstrate that these two types of corticostriatal cells distinct in their dendritic morphologies show directional and domain-dependent preferences in their synaptic connectivity.
皮质纹状体锥体细胞在额叶皮质中具有异质性。在此,我们表明大鼠额叶皮质中皮质纹状体神经元的亚群基于其皮质下靶点相互选择性连接。利用逆行标记细胞的配对记录,我们研究了两种投射细胞类型之间的突触连接性:那些投射到脑桥的细胞[皮质脑桥(CPn)细胞],通常有侧支投射到纹状体,以及那些投射到纹状体两侧但不投射到脑桥的细胞[交叉皮质纹状体(CCS)细胞]。这两种类型在顶端树突方面在形态上有所区别。CCS细胞的树突形态与其在皮质内的体细胞深度相关。CCS细胞相互之间有互惠的突触连接,并且也向CPn细胞提供突触输入。然而,即使在显示有CCS到CPn连接性的配对中,也很少发现从CPn到CCS细胞的连接。此外,CCS细胞优先支配其他CCS细胞的基底树突,但与CPn细胞的基底树突和顶端树突都有接触。突触反应的幅度在一定程度上与接触点数相关。在CCS到CCS连接中,兴奋性突触后电流(EPSC)幅度与接触数的比值往往更大。因此,我们的数据表明,这两种在树突形态上不同的皮质纹状体细胞在突触连接性上表现出方向性和区域依赖性偏好。