Department of Neurology, Okayama University Graduate School of Medicine, Dentistry and Pharmaceutical Science, 2-5-1 Shikata-cho, Okayama 700-8558, Japan.
Brain Res. 2012 Dec 7;1488:123-31. doi: 10.1016/j.brainres.2012.10.012. Epub 2012 Oct 11.
Heat shock transcription factor 1 (HSF1) modulates the expression of the cell survival heat shock protein 70 (HSP70) and the cell death T-cell death associated gene 51 (TDAG51) in response to heat shock and various other cell stressors. We previously reported an increase in HSP70 in glial cells of the spinal anterior horn. Here we examined the temporal and spatial changes of HSF1 and TDAG51 expression over the course of motor neuron degeneration in the spinal cord of a mouse model of ALS (G93A-SOD1 Tg mice). The number of glial-like cells expressing HSF1 increased in G93A-SOD1 Tg mice at both early symptomatic (14 weeks) and end stages of disease (18 weeks), while the number of spinal neurons expressing HSF1 decreased. The total level of HSF1 in the anterior lumbar spinal cord was significantly decreased in G93A-SOD1 Tg mice at the end stage of disease. In contrast to HSF1, the level of TDAG51 in the anterior lumbar spinal cord was significantly increased in G93A-SOD1 Tg mice at the end stage of disease. Moreover, TDAG51 progressively increased in glial-like cells in the anterior lumbar spinal cord of G93A-SOD1 Tg mice from the early symptomatic stage, while decreasing in spinal neurons. Taken together, our results suggest that the balance between the cell survival and death signals mediated by HSP70 and TDAG51, respectively, may be disturbed by the altered expression of HSF1 during the progression of disease in this ALS model.
热休克转录因子 1(HSF1)可调节细胞存活的热休克蛋白 70(HSP70)和细胞死亡 T 细胞死亡相关基因 51(TDAG51)的表达,以响应热休克和各种其他细胞应激源。我们之前报道过 HSP70 在脊髓前角胶质细胞中的增加。在这里,我们研究了在 ALS 小鼠模型(G93A-SOD1 Tg 小鼠)脊髓运动神经元变性过程中 HSF1 和 TDAG51 表达的时空变化。在疾病早期(14 周)和晚期(18 周),表达 HSF1 的神经胶质样细胞数量在 G93A-SOD1 Tg 小鼠中增加,而表达 HSF1 的脊髓神经元数量减少。在疾病晚期,G93A-SOD1 Tg 小鼠的前腰椎脊髓中的 HSF1 总水平显著降低。与 HSF1 相反,在疾病晚期,G93A-SOD1 Tg 小鼠的前腰椎脊髓中的 TDAG51 水平显著增加。此外,TDAG51 在 G93A-SOD1 Tg 小鼠的前腰椎脊髓中的神经胶质样细胞中从早期症状阶段开始逐渐增加,而在脊髓神经元中减少。总之,我们的研究结果表明,在这种 ALS 模型中,疾病进展过程中 HSF1 的改变表达可能会扰乱 HSP70 和 TDAG51 分别介导的细胞存活和死亡信号之间的平衡。