From the Laboratory of Neurobiology and.
From the Laboratory of Neurobiology and.
J Biol Chem. 2013 Jul 19;288(29):20978-20991. doi: 10.1074/jbc.M113.457903. Epub 2013 May 28.
Memory formation requires learning-based molecular and structural changes in neurons, whereas matrix metalloproteinase (MMP) 9 is involved in the synaptic plasticity by cleaving extracellular matrix proteins and, thus, is associated with learning processes in the mammalian brain. Because the mechanisms of MMP-9 transcription in the brain are poorly understood, this study aimed to elucidate regulation of MMP-9 gene expression in the mouse brain after fear learning. We show here that contextual fear conditioning markedly increases MMP-9 transcription, followed by enhanced enzymatic levels in the three major brain structures implicated in fear learning, i.e. the amygdala, hippocampus, and prefrontal cortex. To reveal the role of AP-1 transcription factor in MMP-9 gene expression, we have used reporter gene constructs with specifically mutated AP-1 gene promoter sites. The constructs were introduced into the medial prefrontal cortex of neonatal mouse pups by electroporation, and the regulation of MMP-9 transcription was studied after contextual fear conditioning in the adult animals. Specifically, -42/-50- and -478/-486-bp AP-1 binding motifs of the mouse MMP-9 promoter sequence have been found to play a major role in MMP-9 gene activation. Furthermore, increases in MMP-9 gene promoter binding by the AP-1 transcription factor proteins c-Fos and c-Jun have been demonstrated in all three brain structures under investigation. Hence, our results suggest that AP-1 acts as a positive regulator of MMP-9 transcription in the brain following fear learning.
记忆的形成需要神经元中的学习相关的分子和结构变化,而基质金属蛋白酶(MMP)9 通过切割细胞外基质蛋白参与突触可塑性,因此与哺乳动物大脑中的学习过程有关。由于大脑中 MMP-9 转录的机制知之甚少,本研究旨在阐明恐惧学习后小鼠大脑中 MMP-9 基因表达的调节。我们在这里表明,情境性恐惧条件作用明显增加了 MMP-9 的转录,随后在三个主要参与恐惧学习的大脑结构(杏仁核、海马体和前额叶皮层)中增强了酶水平。为了揭示 AP-1 转录因子在 MMP-9 基因表达中的作用,我们使用了具有特定突变的 AP-1 基因启动子位点的报告基因构建体。这些构建体通过电穿孔被引入新生小鼠的内侧前额叶皮层中,并在成年动物中进行情境性恐惧条件作用后研究 MMP-9 转录的调节。具体来说,已经发现小鼠 MMP-9 启动子序列中的-42/-50-和-478/-486-bp AP-1 结合基序在 MMP-9 基因激活中起主要作用。此外,在所有三个研究的大脑结构中,AP-1 转录因子蛋白 c-Fos 和 c-Jun 对 MMP-9 基因启动子结合的增加已被证明。因此,我们的结果表明,AP-1 在恐惧学习后作为大脑中 MMP-9 转录的正调节剂发挥作用。