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脱髓鞘疾病中髓鞘破坏的发病机制:蛋白水解酶的作用。

Pathogenesis of myelin breakdown in demyelinating diseases: role of proteolytic enzymes.

作者信息

Banik N L

机构信息

Department of Neurology, Medical University of South Carolina, Charleston 29425.

出版信息

Crit Rev Neurobiol. 1992;6(4):257-71.

PMID:1384994
Abstract

The mechanism by which the myelin sheath is degraded in demyelinating diseases is unknown. The demonstration of increased activities of both acid (cathepsins B, D, A) and neutral proteinases in tissue from experimental allergic encephalomyelitis (EAE) in animals and multiple sclerosis (MS, plaques) and the disappearance of myelin proteins implicate a role for proteolytic enzyme in myelin breakdown. The degradation of myelin basic protein (MBP) by proteinase yields encephalitogenic peptides and its loss has been found to cause structural alteration of the myelin sheath. This suggests that MBP degradation is an initial step in the breakdown of myelin in demyelinating diseases. A calcium-activated neutral proteinase (calpain), which degrades MBP, was found to increase in activity in MS tissue and cerebrospinal fluid (CSF), and its presence in myelin suggests that myelin may be autodigested in demyelinating disease. The source of increased proteinase activity has been indicated as macrophages, lymphocytes, and proliferative astrocytes (reactive cells). Increased proteinase activity is found in Schwann cells in Wallerian degeneration, and the presence of calpain in myelin-forming oligodendrocytes and Schwann cells suggests that these cells are likely sources of degradative enzymes. The involvement of proteolytic enzymes in the mechanism of myelin breakdown indicates the possible intervention with proteinase inhibitors for beneficial effect.

摘要

脱髓鞘疾病中髓鞘降解的机制尚不清楚。在动物实验性变应性脑脊髓炎(EAE)以及多发性硬化症(MS,斑块)组织中,酸性蛋白酶(组织蛋白酶B、D、A)和中性蛋白酶的活性均增加,同时髓鞘蛋白消失,这表明蛋白水解酶在髓鞘破坏中起作用。蛋白酶对髓鞘碱性蛋白(MBP)的降解产生致脑炎肽,并且已经发现其丢失会导致髓鞘结构改变。这表明MBP降解是脱髓鞘疾病中髓鞘破坏的起始步骤。一种可降解MBP的钙激活中性蛋白酶(钙蛋白酶)在MS组织和脑脊液(CSF)中的活性增加,并且其在髓鞘中的存在表明在脱髓鞘疾病中髓鞘可能会发生自身消化。蛋白酶活性增加的来源已表明为巨噬细胞、淋巴细胞和增殖性星形胶质细胞(反应性细胞)。在沃勒变性的施万细胞中发现蛋白酶活性增加,并且在形成髓鞘的少突胶质细胞和施万细胞中存在钙蛋白酶表明这些细胞可能是降解酶的来源。蛋白水解酶参与髓鞘破坏机制表明使用蛋白酶抑制剂进行干预可能会产生有益效果。

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