首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Progressive neuronal and motor dysfunction in mice overexpressing the serine protease inhibitor protease nexin-1 in postmitotic neurons.
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Progressive neuronal and motor dysfunction in mice overexpressing the serine protease inhibitor protease nexin-1 in postmitotic neurons.

机译:在有丝分裂后神经元中过度表达丝氨酸蛋白酶抑制剂蛋白酶nexin-1的小鼠进行性神经元和运动功能障碍。

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摘要

Perturbation of the homeostasis between proteases and their inhibitors has been associated with lesion-induced or degenerative neuronal changes. Protease nexin-1 (PN-1), a secreted serine protease inhibitor, is constitutively expressed in distinct neuronal cell populations of the adult CNS. In an earlier study we showed that transgenic mice with ectopic or increased expression of PN-1 in postnatal neurons have altered synaptic transmission. Here these mice are used to examine the impact of an extracellular proteolytic imbalance on long-term neuronal function. These mice develop disturbances in motor behavior from 12 weeks on, with some of the histopathological changes described in early stages of human motor neuron disease, and neurogenic muscle atrophy in old age. In addition, sensorimotor integration, measured by epicranial multichannel recording of sensory evoked potentials, is impaired. Our results suggest that axonal dysfunction rather than cell death underlies these phenotypes. In particular, long projecting neurons, namely cortical layer V pyramidal and spinal motor neurons, show an age-dependent vulnerability to PN-1 overexpression. These mice can serve to study early stages of in vivo neuronal dysfunction not yet associated with cell loss.
机译:蛋白酶及其抑制剂之间的稳态平衡的扰动与病变引起的或变性的神经元变化有关。蛋白酶nexin-1(PN-1)是一种分泌的丝氨酸蛋白酶抑制剂,在成年CNS的不同神经元细胞群体中组成性表达。在较早的研究中,我们显示了在产后神经元中具有异位或PN-1表达增加的转基因小鼠已经改变了突触传递。在这里,这些小鼠用于检查细胞外蛋白水解失衡对长期神经元功能的影响。这些小鼠从12周开始发展出运动行为障碍,某些组织病理学变化描述于人类运动神经元疾病的早期阶段,而老年神经源性肌肉萎缩。另外,通过上皮多通道记录感觉诱发电位来测量感觉运动整合。我们的结果表明,轴突功能障碍而非细胞死亡是这些表型的基础。特别是,长时间投射的神经元,即皮质V层锥体和脊髓运动神经元,对PN-1过表达表现出年龄依赖性。这些小鼠可用于研究尚未与细胞丢失相关的体内神经元功能障碍的早期阶段。

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