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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Age-dependent myelin degeneration and proteolysis of oligodendrocyte proteins is associated with the activation of calpain-1 in the rhesus monkey.
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Age-dependent myelin degeneration and proteolysis of oligodendrocyte proteins is associated with the activation of calpain-1 in the rhesus monkey.

机译:年龄依赖性的髓鞘变性和少突胶质细胞蛋白的蛋白水解与恒河猴中calpain-1的激活有关。

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摘要

Myelin provides important insulating properties to axons allowing for propagation of action potentials over large distances at high velocity. Disruption of the myelin sheath could therefore contribute to cognitive impairment, such as that observed during the normal aging process. In the present study, age-related changes in myelin, myelin proteins and oligodendrocyte proteins were assessed in relationship to calpain-1 expression and cognition in the rhesus monkey. Isolation of myelin fractions from brain white matter revealed that as the content of the intact myelin fraction decreased with age, there was a corresponding increase in the floating or degraded myelin fraction, suggesting an increased breakdown of intact myelin with age. Of the myelin proteins examined, only the myelin-associated glycoprotein decreased with age. Levels of the oligodendrocyte-specific proteins 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNPase) and myelin/oligodendrocyte-specific protein (MOSP) increased dramatically in white matter homogenates and myelin with age. Age-related increases in degraded CNPase also were demonstrable in white matter in association with increases in activated calpain-1. Degraded CNPase was also detectable in myelin fractions, with only the floating fraction containing activated calpain-1. The increases in the activated enzyme in white matter were much greater than those found in myelin fractions suggesting a source other than the myelin membrane for the marked overexpression of activated calpain-1 with age. In addition, CNPase was demonstrated to be a substrate for calpain in vitro. In summary, changes in myelin and oligodendrocyte proteins occur with age, and they appear to have a significant relationship to cognitive impairment. The overexpression of CNPase and MOSP suggests new formation of myelin by oligodendrocytes, which may occur in response to myelin degradation and injury caused by proteolytic enzymes such as calpain.
机译:髓磷脂为轴突提供重要的绝缘性能,从而允许动作电位在较大距离上高速传播。髓鞘的破坏因此可能导致认知障碍,例如在正常衰老过程中观察到的。在本研究中,评估了猕猴中髓磷脂,髓磷脂蛋白和少突胶质细胞蛋白的年龄相关变化与calpain-1表达和认知的关系。从脑白质中分离出髓磷脂成分后发现,随着完整髓磷脂成分的含量随着年龄的增长而降低,漂浮或降解的髓磷脂成分也相应增加,这表明完整髓磷脂的降解随着年龄的增长而增加。在检查的髓磷脂蛋白中,只有髓磷脂相关的糖蛋白随年龄而下降。白质匀浆和髓磷脂中,少突胶质细胞特异性蛋白2',3'-环核苷酸3'-磷酸二酯酶(CNPase)和髓磷脂/少突胶质细胞特异性蛋白(MOSP)的水平随着年龄的增长而显着增加。在白质中,与年龄相关的降解CNPase的增加也与活化的钙蛋白酶-1的增加相关。在髓磷脂级分中也可检测到降解的CNPase,只有漂浮级分含有活化的钙蛋白酶-1。白质中活化酶的增加远大于髓磷脂级分中发现的增加,这表明随着年龄的增长,活化钙蛋白酶-1的明显过表达可能是髓鞘膜以外的来源。此外,CNPase被证明是体外钙蛋白酶的底物。总之,髓磷脂和少突胶质细胞蛋白的变化随着年龄的增长而发生,并且它们似乎与认知障碍有着显着的关系。 CNPase和MOSP的过度表达表明少突胶质细胞形成了髓磷脂,这可能是由于髓磷脂降解和蛋白酶蛋白(例如钙蛋白酶)引起的损伤而发生的。

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