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Changes in myelin and axonal protein organization in the aged rhesus monkey brain.

机译:恒河猴猴大脑髓磷脂和轴突蛋白组织的变化。

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摘要

The steady impairment of normal cognitive performance is a common feature of aging in both humans and various animal models. An age-related decline in brain white matter volume and changes in myelin ultrastructure and biochemistry are proposed to underlie age-related cognitive decline, presumably by dampening axonal conduction. Age-dependent changes in the expression of 2' , 3'-cyclic nucleotide phosphodiesterase (CNP), a protein crucial to myelin and axonal maintenance, and its proteolysis by calpain-1 are central events in the aging brain and may mediate the effects of age on molecular organization in the axon. Using the aged rhesus monkey as a model for understanding age-related changes in myelin and white matter, an age-dependent accumulation of CNP, independent of increases in CNP gene expression, is observed throughout the brain in detergent-soluble homogenates. With age, CNP also accumulates in detergent-insoluble fractions of myelin, showing altered partitioning in fractions isolating with lipid rafts and those not. Ubiquitinated CNP can be immunoprecipitated from raft-associated fractions and high molecular weight aggregates are detectable. In MO3.13 cells overexpressing increasing amounts of EGFP-CNP, ubiquitin and CNP-positive aggregates appear. In myelin from aged animals, CNP undergoes proteolysis, evidenced by the appearance of low molecular weight fragments throughout the brain, some of which can be generated in vitro by calpain-1 and partially prevented ex vivo by inhibiting calpain-1. CNP proteolysis with age is associated with equally widespread activation of the protease, calpain-1, largely in white matter microglia. The molecular organization of the axon in the region of the node of Ranvier is partly determined and maintained by myelin. Thus, in the presence of age-related changes in myelin, in both the rat and monkey optic nerve, voltage-gated potassium channels (Kv) are mislocalized into the paranodal region. This mislocalization is accompanied by a breakdown in the normal molecular compartmentalization of the paranode, indicated by increasingly irregular contactin-associated protein (caspr)-positive profiles. Hence, in the aged monkey, the accumulation and proteolysis of CNP is a result of both ineffective and inappropriate proteolysis and it is proposed that changes in CNP lead to variation in axonal molecular organization and perhaps to cognitive decline in the rhesus monkey.
机译:在人类和各种动物模型中,正常认知能力的持续损害是衰老的普遍特征。与年龄相关的脑白质下降以及髓磷脂超微结构和生化的改变被认为是与年龄相关的认知下降的基础,大概是通过抑制轴突传导。 2',3'-环核苷酸磷酸二酯酶(CNP)的表达具有年龄依赖性,这是一种对髓鞘和轴突维持至关重要的蛋白质,其钙蛋白酶1引起的蛋白水解是衰老大脑中的中心事件,可能介导了轴突分子组织的年龄。使用老年恒河猴作为了解髓鞘和白质与年龄相关变化的模型,在清洁剂可溶性匀浆物中整个大脑中均观察到CNP的年龄依赖性积累,而与CNP基因表达的增加无关。随着年龄的增长,CNP也积累在去污剂不溶的髓磷脂级分中,显示与脂筏分离的部分和未与脂筏分离的部分中分配的改变。泛素化的CNP可以从与筏相关的级分中进行免疫沉淀,并且可以检测到高分子量的聚集体。在MO3.13细胞中,过表达EGFP-CNP的数量增加,泛素和CNP阳性聚集体出现。在来自老年动物的髓磷脂中,CNP受到蛋白水解作用,这在整个大脑中都出现了低分子量片段,这可由calpain-1在体外产生,并且通过抑制calpain-1可以部分预防离体。随着年龄的增长,CNP蛋白质分解与蛋白酶calpain-1的激活分布广泛相关,主要在白质小胶质细胞中。兰维耶结节区域中轴突的分子组织部分由髓磷脂决定和维持。因此,在髓鞘存在与年龄相关的变化时,在大鼠和猴子的视神经中,电压门控性钾离子通道(Kv)错位进入了结节旁区域。这种错位伴随着旁节的正常分子区室的破坏,这由越来越不规则的接触素相关蛋白(caspr)阳性分布所表明。因此,在衰老的猴子中,CNP的积累和蛋白水解是无效和不适当的蛋白水解的结果,因此有人提出CNP的变化会导致恒河猴的轴突分子组织发生变化,并可能导致认知能力下降。

著录项

  • 作者

    Hinman, Jason Donald.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Biology Neuroscience.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 180 p.
  • 总页数 180
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经科学;
  • 关键词

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