SMith M E
Adv Exp Med Biol. 1978;100:347-63. doi: 10.1007/978-1-4684-2514-7_25.
Lymphocytes from lymph nodes of Lewis rats with acute experimental allergic encephalomyelitis (EAE) contain high amounts of acid and neutral proteinases which hydrolyze myelin basic protein. The activity at neutral pH is also expressed by whole lymphocytes in isotonic medium, with about 50% more activity released by homogenization. Neutral proteinase activity in lymphocytes increases with the onset of acute EAE while the activity of those from Freund's adjuvant-injected controls increases somewhat later. The total neutral proteinase activity appears to be membrane-bound, most likely in the lysosomes, but half the total was associated with the nuclear fraction. The basic protein proteinase was compared with an enzyme described earlier, especially active toward polylysine, and some differences were noted. It appears that two enzymes may be present in lymphocytes which hydrolyze basic protein at a neutral pH. An increase in neutral proteinase activity was observed in some, but not all, lymphocyte preparations from patients in various stages of multiple sclerosis. The finding that whole activated lymphocytes are capable of hydrolyzing basic protein suggests that these cells which are believed to be precursors of mononuclear cells migrating into the central nervous system may be active agents in the early stages of myelin dissolution in experimental allergic encephalomyelitis. At present, such a mechanism is only theoretical, and the possibility that activated lymphocytes may be a factor in demyelination in multiple sclerosis is even more speculative.
患有急性实验性过敏性脑脊髓炎(EAE)的Lewis大鼠淋巴结中的淋巴细胞含有大量可水解髓鞘碱性蛋白的酸性和中性蛋白酶。中性pH条件下的活性也可由等渗培养基中的全淋巴细胞表现出来,匀浆后释放的活性增加约50%。淋巴细胞中的中性蛋白酶活性随急性EAE的发作而增加,而来自注射弗氏佐剂对照组的淋巴细胞活性增加稍晚。总的中性蛋白酶活性似乎与膜结合,很可能在溶酶体中,但总活性的一半与细胞核部分相关。将碱性蛋白蛋白酶与先前描述的一种对聚赖氨酸特别有活性的酶进行了比较,并注意到了一些差异。似乎淋巴细胞中可能存在两种在中性pH条件下水解碱性蛋白的酶。在多发性硬化症不同阶段患者的一些但并非所有淋巴细胞制剂中观察到中性蛋白酶活性增加。全激活淋巴细胞能够水解碱性蛋白这一发现表明,这些被认为是迁移到中枢神经系统的单核细胞前体的细胞可能是实验性过敏性脑脊髓炎髓鞘溶解早期阶段的活性因子。目前,这样一种机制只是理论上的,而激活淋巴细胞可能是多发性硬化症脱髓鞘因素的可能性甚至更具推测性。