de Rosbo N K, Bernard C C
Neuroimmunology Laboratory, La Trobe University, Victoria, Australia.
J Neurochem. 1989 Aug;53(2):513-8. doi: 10.1111/j.1471-4159.1989.tb07363.x.
Membrane-bound proteolysis may be implicated in the pathogenesis of demyelinating disorders including multiple sclerosis (MS). We previously found that the extent of myelin basic protein (MBP) degradation by the calcium-activated neutral protease did not differ for isolated human control myelin or MS myelin. Hence we suggested that, if involved in demyelination, the myelin neutral protease must be activated in vivo by an increased availability of free calcium. The postulate was therefore tested that immunoglobulin (Ig) binding to myelin results in activation of the myelin neutral protease, possibly through release of free calcium from calcium-binding sites of myelin. Isolated myelin from the brains of controls and patients with MS were incubated with purified Igs eluted from the brains of patients with MS or controls and degradation of MBP was assessed by quantitative electroimmunoblotting. Such degradation was significantly greater in myelin incubated in the presence of MS Igs than in myelin incubated without added Igs or in the presence of control Igs. Furthermore, the degree of MBP degradation in myelin incubated with control Igs was similar to that observed in myelin incubated without added Igs. Accordingly, it is suggested that Ig in MS brain potentiates myelin breakdown. Moreover activation of membrane-bound proteolysis by Ig binding to myelin appears to represent a hitherto undescribed pathway for demyelination in MS.
膜结合蛋白水解作用可能与包括多发性硬化症(MS)在内的脱髓鞘疾病的发病机制有关。我们之前发现,钙激活中性蛋白酶对人对照髓鞘或MS髓鞘中髓鞘碱性蛋白(MBP)的降解程度并无差异。因此我们认为,如果髓鞘中性蛋白酶参与脱髓鞘过程,那么它必定是在体内通过游离钙可用性的增加而被激活的。因此,我们对这一假设进行了验证,即免疫球蛋白(Ig)与髓鞘结合会导致髓鞘中性蛋白酶的激活,这可能是通过从髓鞘的钙结合位点释放游离钙来实现的。将来自对照者和MS患者大脑的分离髓鞘与从MS患者或对照者大脑中洗脱的纯化Ig一起孵育,并通过定量电免疫印迹法评估MBP的降解情况。在存在MS Ig的情况下孵育的髓鞘中,这种降解明显大于未添加Ig或存在对照Ig的情况下孵育的髓鞘中的降解。此外,与对照Ig一起孵育的髓鞘中MBP的降解程度与未添加Ig孵育的髓鞘中观察到的降解程度相似。因此,有人认为MS大脑中的Ig会增强髓鞘分解。此外,Ig与髓鞘结合激活膜结合蛋白水解作用似乎代表了MS中一种迄今未被描述的脱髓鞘途径。