Suppr超能文献

遗传性神经病变小鼠模型中节间髓鞘的结构与稳定性

Structure and stability of internodal myelin in mouse models of hereditary neuropathy.

作者信息

Avila Robin L, Inouye Hideyo, Baek Rena C, Yin Xinghua, Trapp Bruce D, Feltri M Laura, Wrabetz Lawrence, Kirschner Daniel A

机构信息

Biology Department, Boston College, Chestnut Hill, MA 02467, USA

出版信息

J Neuropathol Exp Neurol. 2005 Nov;64(11):976-90. doi: 10.1097/01.jnen.0000186925.95957.dc.

Abstract

Peripheral neuropathies often result in abnormalities in the structure of internodal myelin, including changes in period and membrane packing, as observed by electron microscopy (EM). Mutations in the gene that encodes the major adhesive structural protein of internodal myelin in the peripheral nervous system of humans and mice--P0 glycoprotein--correlate with these defects. The mechanisms by which P0 mutations interfere with myelin packing and stability are not well understood and cannot be provided by EM studies that give static and qualitative information on fixed material. To gain insights into the pathogenesis of mutant P0, we used x-ray diffraction, which can detect more subtle and dynamic changes in native myelin, to investigate myelin structure in sciatic nerves from murine models of hereditary neuropathies. We used mice with disruption of one or both copies of the P0 gene (models of Charcot-Marie-Tooth-like neuropathy [CMT1B] or Dejerine-Sottas-like neuropathy) and mice with a CMT1B resulting from a transgene encoding P0 with an amino terminal myc-tag. To directly test the structural role of P0, we also examined a mouse that expresses P0 instead of proteolipid protein in central nervous system myelin. To link our findings on unfixed nerves with EM results, we analyzed x-ray patterns from unembedded, aldehyde-fixed nerves and from plastic-embedded nerves. From the x-ray patterns recorded from whole nerves, we assessed the amount of myelin and its quality (i.e. relative thickness and regularity). Among sciatic nerves having different levels of P0, we found that unfixed nerves and, to a lesser extent, fixed but unembedded nerves gave diffraction patterns of sufficient quality to distinguish periods, sometimes differing by a few Angstroms. Certain packing abnormalities were preserved qualitatively by aldehyde fixation, and the relative amount and structural integrity of myelin among nerves could be distinguished. Measurements from the same nerve over time showed that the amount of P0 affected myelin's stability against swelling, thus directly supporting the hypothesis that packing defects underlie instability in "live" or intact myelin. Our findings demonstrate that diffraction can provide a quantitative basis for understanding, at a molecular level, the membrane packing defects that occur in internodal myelin in demyelinating peripheral neuropathies.

摘要

周围神经病变常导致结间髓鞘结构异常,包括周期和膜堆积的变化,这可通过电子显微镜(EM)观察到。在人类和小鼠的周围神经系统中,编码结间髓鞘主要黏附结构蛋白的基因——P0糖蛋白——发生突变与这些缺陷相关。P0突变干扰髓鞘堆积和稳定性的机制尚不清楚,EM研究无法提供有关固定材料的静态和定性信息。为了深入了解突变型P0的发病机制,我们使用X射线衍射技术,该技术可以检测天然髓鞘中更细微和动态的变化,来研究遗传性神经病变小鼠模型坐骨神经的髓鞘结构。我们使用了P0基因一个或两个拷贝缺失的小鼠(夏科-马里-图斯样神经病[CMT1B]或德热里纳-索塔斯样神经病模型)以及由编码带有氨基末端myc标签的P0的转基因导致CMT1B的小鼠。为了直接测试P0的结构作用,我们还研究了在中枢神经系统髓鞘中表达P0而非蛋白脂蛋白的小鼠。为了将我们在未固定神经上的发现与EM结果联系起来,我们分析了未包埋、醛固定神经和塑料包埋神经的X射线图谱。从全神经记录的X射线图谱中,我们评估了髓鞘的量及其质量(即相对厚度和规则性)。在具有不同P0水平的坐骨神经中,我们发现未固定神经以及在较小程度上固定但未包埋的神经给出的衍射图谱质量足以区分周期,有时相差几埃。某些堆积异常通过醛固定在质量上得以保留,并且神经之间髓鞘的相对量和结构完整性可以区分。对同一神经随时间的测量表明,P0的量影响髓鞘对肿胀的稳定性,从而直接支持了堆积缺陷是“活态”或完整髓鞘不稳定基础的假说。我们的研究结果表明,衍射可以为在分子水平上理解脱髓鞘性周围神经病变中结间髓鞘发生的膜堆积缺陷提供定量依据。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验