Schumacher P A, Eubanks J H, Fehlings M G
Playfair Neuroscience Unit and The Toronto Hospital Research Institute, University of Toronto, The Toronto Hospital, Ontario, Canada.
Neuroscience. 1999;91(2):733-44. doi: 10.1016/s0306-4522(98)00552-1.
We investigated the hypothesis that the Ca2+-activated protease calpain is involved in the pathophysiology of spinal cord injury, and is linked to the proteolytic degradation of cytoskeletal proteins. We report here that levels of calpain I (mu-calpain)-mediated spectrin breakdown products are increased by 15 min post-injury, with peak levels reached by 2 h post-injury. The dephosphorylated form of the neurofilament protein NF200 is substantially lost over the same time-period. A 35-g compressive injury was applied to the midthoracic rat spinal cord for 1 min, and animals were killed at 15 min, 1, 2, 4, 8, 16, and 24 h post-injury. Calpain I-mediated spectrin breakdown products accumulated post-injury, with peak levels reached at 2 h. Secondly, we have demonstrated a progressive loss of the 200,000 mol. wt neurofilament protein NF200, a cytoskeletal calpain substrate, which began within 1-2 h post-injury. Densitometric analyses confirmed that loss of NF200 is a substrate-specific phenomenon, since (i) dephosphorylated NF200 was preferentially lost while phosphorylated NF200 was relatively spared, and (ii) actin, which is not a substrate for calpain, was relatively spared following spinal cord injury. Finally, we demonstrated calpain I-mediated spectrin breakdown within NF200-positive neuronal processes post-injury. We conclude that the accumulation of spectrin breakdown products is temporally and spatially correlated with loss of dephosphorylated NF200 after spinal cord injury.
钙离子激活的蛋白酶钙蛋白酶参与脊髓损伤的病理生理学过程,并与细胞骨架蛋白的蛋白水解降解有关。我们在此报告,钙蛋白酶I(μ-钙蛋白酶)介导的血影蛋白降解产物水平在损伤后15分钟升高,在损伤后2小时达到峰值。神经丝蛋白NF200的去磷酸化形式在同一时间段内大量丢失。对大鼠胸段脊髓中部施加35克的压迫性损伤1分钟,在损伤后15分钟、1小时、2小时、4小时、8小时、16小时和24小时处死动物。钙蛋白酶I介导的血影蛋白降解产物在损伤后积累,在2小时达到峰值。其次,我们证明了分子量为200,000的神经丝蛋白NF200(一种细胞骨架钙蛋白酶底物)在损伤后1-2小时内开始逐渐丢失。光密度分析证实NF200的丢失是一种底物特异性现象,因为(i)去磷酸化的NF200优先丢失,而磷酸化的NF200相对保留,(ii)肌动蛋白不是钙蛋白酶的底物,在脊髓损伤后相对保留。最后,我们证明了损伤后NF200阳性神经元突起内存在钙蛋白酶I介导的血影蛋白降解。我们得出结论,血影蛋白降解产物的积累与脊髓损伤后去磷酸化NF200的丢失在时间和空间上相关。