Tremblay Marie-Eve, Riad Mustapha, Bouvier David, Murai Keith K, Pasquale Elena B, Descarries Laurent, Doucet Guy
Département de pathologie et biologie cellulaire and Groupe de recherche sur le système nerveux central, Université de Montréal, Montréal, Québec, Canada.
J Comp Neurol. 2007 Apr 10;501(5):691-702. doi: 10.1002/cne.21263.
Eph receptors and their ephrin ligands assume various roles during central nervous system development. Several of these proteins are also expressed in the mature brain, and notably in the hippocampus, where EphA4 and ephrins have been shown to influence dendritic spine morphology and long-term potentiation (LTP). To examine the cellular and subcellular localization of EphA4 in adult rat ventral hippocampus, we used light and electron microscopic immunocytochemistry with a specific polyclonal antibody against EphA4. After immunoperoxidase labeling, EphA4 immunoreactivity was found to be enriched in the neuropil layers of CA1, CA3, and dentate gyrus. In all examined layers of these regions, myelinated axons, small astrocytic leaflets, unmyelinated axons, dendritic spines, and axon terminals were immunolabeled in increasing order of frequency. Neuronal cell bodies and dendritic branches were immunonegative. EphA4-labeled dendritic spines and axon terminals corresponded to 9-19% and 25-40% of the total number of spines and axon terminals, respectively. Most labeled spines were innervated by unlabeled terminals, but synaptic contacts between two labeled elements were seen. The vast majority of synaptic junctions made by labeled elements was asymmetrical and displayed features of excitatory synapses. Immunogold labeling of EphA4 was located mostly on the plasma membrane of axons, dendritic spines, and axon terminals, supporting its availability for surface interactions with ephrins. The dual preferential labeling of EphA4 on pre- or postsynaptic specializations of excitatory synapses in adult rat hippocampus is consistent with roles for this receptor in synaptic plasticity and LTP.
Eph受体及其ephrin配体在中枢神经系统发育过程中发挥着多种作用。这些蛋白质中的几种也在成熟大脑中表达,特别是在海马体中,EphA4和ephrin已被证明会影响树突棘形态和长时程增强(LTP)。为了研究成年大鼠腹侧海马体中EphA4的细胞和亚细胞定位,我们使用了针对EphA4的特异性多克隆抗体进行光镜和电镜免疫细胞化学研究。免疫过氧化物酶标记后,发现EphA4免疫反应性在CA1、CA3和齿状回的神经毡层中富集。在这些区域的所有检查层中,有髓轴突、小星形胶质细胞小叶、无髓轴突、树突棘和轴突终末按频率递增顺序被免疫标记。神经元细胞体和树突分支呈免疫阴性。EphA4标记的树突棘和轴突终末分别占树突棘和轴突终末总数的9 - 19%和25 - 40%。大多数标记的树突棘由未标记的终末支配,但可见两个标记元件之间的突触接触。标记元件形成的绝大多数突触连接是不对称的,并表现出兴奋性突触的特征。EphA4的免疫金标记主要位于轴突、树突棘和轴突终末的质膜上,支持其与ephrin进行表面相互作用的可能性。成年大鼠海马体中EphA4在兴奋性突触的突触前或突触后特化上的双重优先标记与该受体在突触可塑性和LTP中的作用一致。