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轴突-神经胶质连接中断会导致郎飞结处异常线粒体的积累。

Disrupted axo-glial junctions result in accumulation of abnormal mitochondria at nodes of ranvier.

作者信息

Einheber Steven, Bhat Manzoor A, Salzer James L

机构信息

Hunter College School of Health Sciences, 425 E 25th Street, New York, NY 10010, USA.

出版信息

Neuron Glia Biol. 2006 Aug;2(3):165-74. doi: 10.1017/S1740925X06000275.

Abstract

Mitochondria and other membranous organelles are frequently enriched in the nodes and paranodes of peripheral myelinated axons, particularly those of large caliber. The physiologic role(s) of this organelle enrichment and the rheologic factors that regulate it are not well understood. Previous studies suggest that axonal transport of organelles across the nodal/paranodal region is locally regulated. In this study, we have examined the ultrastructure of myelinated axons in the sciatic nerves of mice deficient in the contactin-associated protein (Caspr), an integral junctional component. These mice, which lack the normal septate-like junctions that promote attachment of the glial (paranodal) loops to the axon, contain aberrant mitochondria in their nodal/paranodal regions. These mitochondria are typically large and swollen and occupy prominent varicosities of the nodal axolemma. In contrast, mitochondria located outside the nodal/paranodal regions of the myelinated axons appear normal. These findings suggest that paranodal junctions regulate mitochondrial transport and function in the axoplasm of the nodal/paranodal region of myelinated axons of peripheral nerves. They further implicate the paranodal junctions in playing a role, either directly or indirectly, in the local regulation of energy metabolism in the nodal region.

摘要

线粒体和其他膜性细胞器常常在周围有髓轴突的结和旁结处富集,尤其是大口径轴突的这些部位。这种细胞器富集的生理作用以及调节它的流变学因素尚未得到充分了解。先前的研究表明,细胞器通过结/旁结区域的轴突运输是受局部调节的。在本研究中,我们检查了接触蛋白相关蛋白(Caspr,一种完整的连接成分)缺陷小鼠坐骨神经中有髓轴突的超微结构。这些小鼠缺乏促进神经胶质(旁结)环附着于轴突的正常分隔样连接,其结/旁结区域含有异常线粒体。这些线粒体通常很大且肿胀,占据结轴膜突出的静脉曲张部位。相比之下,位于有髓轴突结/旁结区域之外的线粒体看起来正常。这些发现表明,旁结连接调节周围神经有髓轴突结/旁结区域轴浆中线粒体的运输和功能。它们进一步表明旁结连接在结区域能量代谢的局部调节中直接或间接发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a74d/1855224/d226110e99fd/nihms20049f1.jpg

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