Hinman Jason D, Peters Alan, Cabral Howard, Rosene Douglas L, Hollander William, Rasband Matthew N, Abraham Carmela R
Department of Medicine, Boston University School of Medicine, Boston, Massachusetts 02118, USA.
J Comp Neurol. 2006 Apr 1;495(4):351-62. doi: 10.1002/cne.20886.
In myelinated axons, action potential conduction is dependent on the discrete clustering of ion channels at specialized regions of the axon, termed nodes of Ranvier. This organization is controlled, at least in part, by the adherence of myelin sheaths to the axolemma in the adjacent region of the paranode. Age-related disruption in the integrity of internodal myelin sheaths is well described and includes splitting of myelin sheaths, redundant myelin, and fluctuations in biochemical constituents of myelin. These changes have been proposed to contribute to age-related cognitive decline; in previous studies of monkeys, myelin changes correlate with cognitive performance. In the present study, we hypothesize that age-dependent myelin breakdown results in concomitant disruption at sites of axoglial contact, in particular at the paranode, and that this disruption alters the molecular organization in this region. In aged monkey and rat optic nerves, immunolabeling for voltage-dependent potassium channels of the Shaker family (Kv1.2), normally localizing in the adjacent juxtaparanode, were mislocalized to the paranode. Similarly, immunolabeling for the paranodal marker caspr reveals irregular caspr-labeled paranodal profiles, suggesting that there may be age-related changes in paranodal structure. Ultrastructural analysis of paranodal segments from optic nerve of aged monkeys shows that, in a subset of myelinated axons with thick sheaths, some paranodal loops fail to contact the axolemma. Thus, age-dependent myelin alterations affect axonal protein localization and may be detrimental to maintenance of axonal conduction.
在有髓鞘轴突中,动作电位的传导依赖于轴突特定区域(称为郎飞结)离子通道的离散聚集。这种组织结构至少部分受髓鞘在近结旁区域与轴膜的附着控制。与年龄相关的节间髓鞘完整性破坏已有充分描述,包括髓鞘分裂、多余髓鞘以及髓鞘生化成分的波动。这些变化被认为与年龄相关的认知衰退有关;在先前对猴子的研究中,髓鞘变化与认知表现相关。在本研究中,我们假设年龄依赖性的髓鞘分解会导致轴突与神经胶质接触部位,特别是近结旁区域的相应破坏,并且这种破坏会改变该区域的分子组织。在老年猴子和大鼠的视神经中,通常定位于相邻近结旁的Shaker家族电压依赖性钾通道(Kv1.2)的免疫标记被错误定位于近结旁。同样,近结旁标记物接触蛋白相关蛋白(Caspr)的免疫标记显示Caspr标记的近结旁轮廓不规则,表明近结旁结构可能存在与年龄相关的变化。对老年猴子视神经近结旁节段的超微结构分析表明,在一部分具有厚髓鞘的有髓鞘轴突中,一些近结旁环未能与轴膜接触。因此,年龄依赖性的髓鞘改变会影响轴突蛋白定位,可能对轴突传导的维持有害。