Conboy Lisa, Seymour Claire M, Monopoli Marco P, O'Sullivan Niamh C, Murphy Keith J, Regan Ciaran M
School of Biomolecular and Biomedical Sciences, UCD Conway Institute, University College Dublin, Belfield, Dublin 4, Ireland.
Neurobiol Learn Mem. 2007 Oct;88(3):342-51. doi: 10.1016/j.nlm.2007.04.006. Epub 2007 May 31.
Recent evidence has suggested a role for Notch in memory consolidation but the means by which this evolutionarily conserved mechanism serves these plasticity-related processes remains to be established. We have examined a role for this signalling pathway in the hippocampal dentate gyrus of Wistar rats at increasing times following passive avoidance conditioning. Our principal finding is that a transient attenuation of Notch signalling occurs at the 10-12h post-training time. In this period, extracellular Notch-1 protein fragment exhibited a significant 2- to 3-fold increase but, by contrast, Notch-1 mRNA levels were significantly reduced. Moreover, transient inactivation of Notch-1 signalling was further suggested by concomitant reductions in the Notch ligand Jagged-1 and Notch-1 target protein Hes-1 mRNA levels. The C-terminal fragment of PS-1, necessary for gamma-secretase activity, was also significantly reduced at the 12h post-training time. These events were commensurate with the increase of a Notch immunoreactive fragment of 66 kDa in the nuclear fraction of the dentate gyrus. This fragment, identified with two different Notch-1 antisera, was not the expected NICD polypeptide of approximately 110 kDa and its accumulation was found to correlate with a significantly reduced expression of the Hes-1 transcriptional repressor. During the period of reduced Notch activity, a transient increase in soluble beta-catenin and GSK-3beta phosphorylation was observed, indicating a reciprocal activation of the Wnt signalling pathway. As down-regulation of Notch signalling promotes differentiation and neurite outgrowth in post-mitotic neurons, it is proposed that this pathway regulates the integration of synapses transiently produced during memory consolidation.
近期证据表明Notch在记忆巩固中发挥作用,但这种进化上保守的机制服务于这些与可塑性相关过程的方式仍有待确定。我们研究了在被动回避条件反射后不同时间点,该信号通路在Wistar大鼠海马齿状回中的作用。我们的主要发现是,在训练后10 - 12小时,Notch信号出现短暂减弱。在此期间,细胞外Notch-1蛋白片段显著增加了2至3倍,但相比之下,Notch-1 mRNA水平显著降低。此外,Notch配体Jagged-1和Notch-1靶蛋白Hes-1 mRNA水平的同时降低进一步表明Notch-1信号的短暂失活。γ-分泌酶活性所必需的PS-1的C末端片段在训练后12小时也显著降低。这些事件与齿状回核部分中66 kDa的Notch免疫反应性片段的增加相一致。用两种不同的Notch-1抗血清鉴定出的该片段,并非预期的约110 kDa的NICD多肽,并且发现其积累与Hes-1转录抑制因子的表达显著降低相关。在Notch活性降低期间,观察到可溶性β-连环蛋白和GSK-3β磷酸化短暂增加,表明Wnt信号通路的反向激活。由于Notch信号的下调促进有丝分裂后神经元的分化和神经突生长,因此推测该通路调节记忆巩固过程中短暂产生的突触整合。