Brennaman Leann Hinkle, Maness Patricia F
Department of Biochemistry and Biophysics, and Silvio Conte Center for Schizophrenia Research, University of North Carolina School of Medicine, Chapel Hill, NC 27599, USA.
Mol Cell Neurosci. 2008 Apr;37(4):781-93. doi: 10.1016/j.mcn.2008.01.006. Epub 2008 Jan 17.
Neural cell adhesion molecule, NCAM, is an important regulator of neuronal process outgrowth and synaptic plasticity. Transgenic mice that overexpress the soluble NCAM extracellular domain (NCAM-EC) have reduced GABAergic inhibitory and excitatory synapses, and altered behavioral phenotypes. Here, we examined the role of dysregulated NCAM shedding, modeled by overexpression of NCAM-EC, on development of GABAergic basket interneurons in the prefrontal cortex. NCAM-EC overexpression disrupted arborization of basket cells during the major period of axon/dendrite growth, resulting in decreased numbers of GAD65- and synaptophysin-positive perisomatic synapses. NCAM-EC transgenic protein interfered with interneuron branching during early postnatal stages when endogenous polysialylated (PSA) NCAM was converted to non-PSA isoforms. In cortical neuron cultures, soluble NCAM-EC acted as a dominant inhibitor of NCAM-dependent neurite branching and outgrowth. These findings suggested that excess soluble NCAM-EC reduces perisomatic innervation of cortical neurons by perturbing axonal/dendritic branching during cortical development.
神经细胞黏附分子(NCAM)是神经元突起生长和突触可塑性的重要调节因子。过度表达可溶性NCAM胞外结构域(NCAM-EC)的转基因小鼠具有减少的GABA能抑制性和兴奋性突触,以及改变的行为表型。在此,我们研究了以NCAM-EC过表达为模型的失调的NCAM脱落对前额叶皮质中GABA能篮状中间神经元发育的作用。NCAM-EC过表达在轴突/树突生长的主要时期破坏了篮状细胞的树突分支,导致GAD65和突触素阳性的胞体周围突触数量减少。当内源性多唾液酸化(PSA)NCAM转化为非PSA异构体时,NCAM-EC转基因蛋白在出生后早期干扰了中间神经元的分支。在皮质神经元培养物中,可溶性NCAM-EC作为NCAM依赖性神经突分支和生长的显性抑制剂。这些发现表明,过量的可溶性NCAM-EC通过在皮质发育过程中干扰轴突/树突分支来减少皮质神经元的胞体周围神经支配。