Department of Neurology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, 2-5-1 Shikata-cho Okayama 700-8558, Japan.
Brain Res. 2012 Sep 14;1473:55-62. doi: 10.1016/j.brainres.2012.07.040. Epub 2012 Jul 31.
We have recently reported spinal blood flow-metabolism uncoupling in an amyotrophic lateral sclerosis (ALS) animal model using Cu/Zn-superoxide dismutase 1 (SOD1)-transgenic (Tg) mice, suggesting a relative hypoxia in the spinal cord. However, the hypoxic stress sensor pathway has not been well studied in ALS. Here, we examined temporal and spatial changes of the hypoxic stress sensor proteins HIF-1α and its downstream proteins (VEGF, HO-1, and EPO) during the normoxiccourse of motor neuron (MN) degeneration in the spinal cord of these ALS model mice. We found that HIF-1α protein expression progressively increased both in the anterior large MNs and the surrounding glial cells in Tg mice from early symptomatic 14 week (W) and end stage 18 W. Double immunofluorescence analysis revealed that HIF-1α, plus GFAP and Iba-1 double-positive surrounding glial cells, progressively increased from 14 W to 18 W, although the immunohistochemistry in large MNs did not change. Expression levels of VEGF and HO-1 also showed a progressive increase but were significant only in the surrounding glial cells at 18 W. In contrast, EPO protein expression was decreased in the surrounding glial cells of Tg mice at 18 W. Because HIF1-α serves as an important mediator of the hypoxic response, these findings indicate that MNs lack the neuroprotective response to hypoxic stress through the HIF-1α system, which could be an important mechanism of neurodegeneration in ALS.
我们最近在肌萎缩侧索硬化症(ALS)动物模型中报道了脊髓血流代谢解耦联,该模型使用铜/锌超氧化物歧化酶 1(SOD1)转基因(Tg)小鼠,提示脊髓中存在相对缺氧。然而,ALS 中缺氧应激传感器通路尚未得到很好的研究。在这里,我们研究了在这些 ALS 模型小鼠的脊髓中,正常氧条件下运动神经元(MN)退化过程中缺氧应激传感器蛋白 HIF-1α及其下游蛋白(VEGF、HO-1 和 EPO)的时空变化。我们发现,HIF-1α 蛋白表达在 Tg 小鼠的前大 MN 和周围神经胶质细胞中从早期有症状的 14 周(W)和终末期 18 周(W)逐渐增加。双免疫荧光分析显示,HIF-1α 与 GFAP 和 Iba-1 双阳性周围神经胶质细胞一起,从 14 周逐渐增加到 18 周,尽管大 MN 中的免疫组织化学没有变化。VEGF 和 HO-1 的表达水平也呈逐渐增加趋势,但仅在 18 周时周围神经胶质细胞中具有统计学意义。相比之下,18 周时 Tg 小鼠周围神经胶质细胞中的 EPO 蛋白表达减少。由于 HIF1-α 作为缺氧反应的重要介质,这些发现表明 MN 缺乏通过 HIF-1α 系统对缺氧应激的神经保护反应,这可能是 ALS 中神经退行性变的重要机制。