Laboratory of Neuroscience, Department of Biophysics, Wroclaw Medical University, Chalubinskiego 3, 50-368, Wroclaw, Poland.
Mol Cell Neurosci. 2012 Jun;50(2):147-59. doi: 10.1016/j.mcn.2012.04.005. Epub 2012 Apr 25.
Matrix Metalloproteinases (MMPs) are a family of endopeptidases known to process extracellular proteins. In the last decade, studies carried out mainly on the Schaffer collateral-CA1 hippocampal projection have provided solid evidence that MMPs regulate synaptic plasticity and learning. Recently, our group has shown that MMP blockade disrupts LTP maintenance also in the mossy fiber-CA3 (mf-CA3) projection (Wojtowicz and Mozrzymas, 2010), where LTP mechanisms are profoundly different (NMDAR-independent and presynaptic expression site). However, how plasticity of this pathway correlates with activity and expression of MMPs remains unknown. Interestingly, several potential MMP substrates (especially of gelatinases) are localized intracellularly but little is known about MMP activity in this compartment. In the present study we have asked whether LTP is associated with the expression and activity of gelatinases in apparent intra- and extracellular compartments along mf-CA3 projection. In situ zymography showed that LTP induction was associated with increased gelatinases activity in the cytoplasm of the hilar and CA3 neurons. Using gelatin zymography, immunohistochemistry and immunofluorescent staining we found that this effect was due to de novo synthesis and activation of MMP-9 which, 2-3h after LTP induction was particularly evident in the cytoplasm. In contrast, MMP-2 was localized preferentially in the nuclei and was not affected by LTP induction. In conclusion, we demonstrate that LTP induction in the mf-CA3 pathway correlates with increased expression and activity of MMP-9 and provide the first evidence that this increase is particularly evident in the neuronal cytoplasm and nucleus.
基质金属蛋白酶(MMPs)是一类已知能够加工细胞外蛋白的内肽酶。在过去的十年中,主要在沙费尔侧枝-CA1 海马投射上进行的研究提供了确凿的证据,表明 MMPs 调节突触可塑性和学习。最近,我们的研究小组表明,MMP 阻断也会破坏苔藓纤维-CA3(mf-CA3)投射中的长时程增强(LTP)维持(Wojtowicz 和 Mozrzymas,2010),其中 LTP 机制有很大的不同(NMDAR 非依赖性和突触前表达位点)。然而,这条途径的可塑性与 MMP 的活性和表达如何相关仍然未知。有趣的是,一些潜在的 MMP 底物(特别是明胶酶)定位于细胞内,但关于该细胞区室中的 MMP 活性知之甚少。在本研究中,我们询问 LTP 是否与 mf-CA3 投射中明显的细胞内和细胞外隔室中的明胶酶的表达和活性相关。原位酶谱法显示,LTP 诱导与颗粒细胞和 CA3 神经元细胞质中明胶酶活性的增加有关。通过明胶酶谱法、免疫组织化学和免疫荧光染色,我们发现这种效应是由于 MMP-9 的从头合成和激活所致,在 LTP 诱导后 2-3 小时,MMP-9 在细胞质中尤为明显。相比之下,MMP-2 优先定位于细胞核中,不受 LTP 诱导的影响。总之,我们证明 mf-CA3 通路中的 LTP 诱导与 MMP-9 的表达和活性增加相关,并首次提供证据表明这种增加在神经元细胞质和细胞核中尤为明显。