Laboratory of Proteomics, Institute of Biology, Eötvös Loránd University, Budapest, Hungary.
Neurochem Int. 2010 May-Jun;56(6-7):799-809. doi: 10.1016/j.neuint.2010.03.003. Epub 2010 Mar 18.
Matrix metalloproteases (MMPs) degrade or modify extracellular matrix or membrane-bound proteins in the brain. MMP-2 and MMP-9 are activated by treatments that result in a sustained neuronal depolarization and are thought to contribute to neuronal death and structural remodeling. At the synapse, MMP actions on extracellular proteins contribute to changes in synaptic efficacy during learning paradigms. They are also activated during epileptic seizures, and MMP-9 has been associated with the establishment of aberrant synaptic connections after neuronal death induced by kainate treatment. It remains unclear whether MMPs are activated by epileptic activities that do not induce cell death. Here we examine this point in two animal models of epilepsy that do not involve extensive cell damage. We detected an elevation of MMP-9 enzymatic activity in cortical regions of secondary generalization after focal seizures induced by 4-aminopyridine (4-AP) application in rats. Pro-MMP-9 levels were also higher in Wistar Glaxo Rijswijk (WAG/Rij) rats, a genetic model of generalized absence epilepsy, than they were in Sprague-Dawley rats, and this elevation was correlated with diurnally occurring spike-wave-discharges in WAG/Rij rats. The increased enzymatic activity of MMP-9 in these two different epilepsy models is associated with synchronized neuronal activity that does not induce widespread cell death. In these epilepsy models MMP-9 induction may therefore be associated with functions such as homeostatic synaptic plasticity rather than neuronal death.
基质金属蛋白酶(MMPs)降解或修饰大脑中的细胞外基质或膜结合蛋白。MMP-2 和 MMP-9 可被导致持续神经元去极化的治疗方法激活,被认为有助于神经元死亡和结构重塑。在突触处,MMP 对细胞外蛋白的作用有助于学习模式期间突触效能的变化。它们也在癫痫发作期间被激活,并且 MMP-9 与 kainate 处理诱导神经元死亡后异常突触连接的建立有关。目前尚不清楚 MMP 是否被不导致细胞死亡的癫痫活动激活。在这里,我们在两个不涉及广泛细胞损伤的癫痫动物模型中检查了这一点。我们在大鼠应用 4-氨基吡啶(4-AP)诱导局灶性发作后的继发性泛化皮质区域检测到 MMP-9 酶活性升高。在广泛性失神癫痫的遗传模型 Wistar Glaxo Rijswijk(WAG/Rij)大鼠中,Pro-MMP-9 水平也高于 Sprague-Dawley 大鼠,并且这种升高与 WAG/Rij 大鼠的昼夜发生的棘波放电相关。在这两种不同的癫痫模型中 MMP-9 酶活性的增加与不诱导广泛细胞死亡的同步神经元活动有关。因此,在这些癫痫模型中,MMP-9 的诱导可能与诸如稳态突触可塑性等功能相关,而不是神经元死亡。