Toyoshima Daisaku, Mandai Kenji, Maruo Tomohiko, Supriyanto Irwan, Togashi Hideru, Inoue Takahito, Mori Masahiro, Takai Yoshimi
Department of Biochemistry and Molecular Biology, Kobe University Graduate School of Medicine, Kobe, Hyogo, Japan ; CREST, Japan Science and Technology Agency, Kobe, Hyogo, Japan.
Faculty of Health Sciences, Kobe University Graduate School of Health Sciences, Kobe, Hyogo, Japan ; CREST, Japan Science and Technology Agency, Kobe, Hyogo, Japan.
PLoS One. 2014 Feb 27;9(2):e89763. doi: 10.1371/journal.pone.0089763. eCollection 2014.
The formation and remodeling of mossy fiber-CA3 pyramidal cell synapses in the stratum lucidum of the hippocampus are implicated in the cellular basis of learning and memory. Afadin and its binding cell adhesion molecules, nectin-1 and nectin-3, together with N-cadherin, are concentrated at puncta adherentia junctions (PAJs) in these synapses. Here, we investigated the roles of afadin in PAJ formation and presynaptic differentiation in mossy fiber-CA3 pyramidal cell synapses. At these synapses in the mice in which the afadin gene was conditionally inactivated before synaptogenesis by using nestin-Cre mice, the immunofluorescence signals for the PAJ components, nectin-1, nectin-3 and N-cadherin, disappeared almost completely, while those for the presynaptic components, VGLUT1 and bassoon, were markedly decreased. In addition, these signals were significantly decreased in cultured afadin-deficient hippocampal neurons. Furthermore, the interevent interval of miniature excitatory postsynaptic currents was prolonged in the cultured afadin-deficient hippocampal neurons compared with control neurons, indicating that presynaptic functions were suppressed or a number of synapse was reduced in the afadin-deficient neurons. Analyses of presynaptic vesicle recycling and paired recordings revealed that the cultured afadin-deficient neurons showed impaired presynaptic functions. These results indicate that afadin regulates both PAJ formation and presynaptic differentiation in most mossy fiber-CA3 pyramidal cell synapses, while in a considerable population of these neurons, afadin regulates only PAJ formation but not presynaptic differentiation.
海马体透明层中苔藓纤维 - CA3 锥体细胞突触的形成与重塑与学习和记忆的细胞基础有关。Afadin 及其结合的细胞粘附分子nectin - 1 和 nectin - 3,与 N - 钙粘蛋白一起,集中在这些突触的点状粘着连接(PAJ)处。在此,我们研究了 afadin 在苔藓纤维 - CA3 锥体细胞突触中 PAJ 形成和突触前分化中的作用。在通过使用巢蛋白 - Cre 小鼠在突触发生前条件性失活 afadin 基因的小鼠的这些突触中,PAJ 成分nectin - 1、nectin - 3 和 N - 钙粘蛋白的免疫荧光信号几乎完全消失,而突触前成分 VGLUT1 和巴松管的信号则显著降低。此外,在培养的缺乏 afadin 的海马神经元中,这些信号也显著降低。此外,与对照神经元相比,培养的缺乏 afadin 的海马神经元中微小兴奋性突触后电流的事件间隔延长,这表明缺乏 afadin 的神经元中突触前功能受到抑制或突触数量减少。对突触前囊泡循环和配对记录的分析表明,培养的缺乏 afadin 的神经元表现出突触前功能受损。这些结果表明,afadin 在大多数苔藓纤维 - CA3 锥体细胞突触中调节 PAJ 形成和突触前分化,而在相当一部分这些神经元中,afadin 仅调节 PAJ 形成而非突触前分化。