Uncoupling of Neuroinflammation from Axonal Degeneration in Mice Lacking the Myelin Protein Tetraspanin-2

被引:46
作者
de Monasterio-Schrader, Patricia [1 ]
Patzig, Julia [1 ]
Moebius, Wiebke [1 ,2 ]
Barrette, Benoit [1 ]
Wagner, Tadzio L. [1 ]
Kusch, Kathrin [1 ]
Edgar, Julia M. [1 ,3 ]
Brophy, Peter J. [4 ]
Werner, Hauke B. [1 ]
机构
[1] Max Planck Inst Expt Med, Dept Neurogenet, D-37075 Gottingen, Germany
[2] Ctr Nanoscale Microscopy & Mol Physiol Brain CNMP, Gottingen, Germany
[3] Univ Glasgow, Inst Infect Immun & Inflammat, Coll Med Vet & Life Sci, Glasgow G61 1QH, Lanark, Scotland
[4] Univ Edinburgh, Ctr Neuroregenerat, Edinburgh EH8 9YL, Midlothian, Scotland
关键词
astrocyte; microglia; oligodendrocyte; proteolipid protein; spastic paraplegia; PELIZAEUS-MERZBACHER DISEASE; PROTEOLIPID PROTEIN; CNS MYELIN; GENOMIC ANALYSIS; CELL-ADHESION; MOUSE MODELS; MICROGLIA; OLIGODENDROCYTES; BRAIN; EXPRESSION;
D O I
10.1002/glia.22561
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Deficiency of the major constituent of central nervous system (CNS) myelin, proteolipid protein (PLP), causes axonal pathology in spastic paraplegia type-2 patients and in Plp1(null)-mice but is compatible with almost normal myelination. These observations led us to speculate that PLP's role in myelination may be partly compensated for by other tetraspan proteins. Here, we demonstrate that the abundance of the structurally related tetraspanin-2 (TSPAN2) is highly increased in CNS myelin of Plp1(null)-mice. Unexpectedly, Tspan2(null)-mutant mice generated by homologous recombination in embryonic stem cells displayed low-grade activation of astrocytes and microglia in white matter tracts while they were fully myelinated and showed no signs of axonal degeneration. To determine overlapping functions of TSPAN2 and PLP, Tspan2(null)*Plp1(null) double-mutant mice were generated. Strikingly, the activation of astrocytes and microglia was strongly enhanced in Tspan2(null)*Plp1(null) double-mutants compared with either single-mutant, but the levels of dysmyelination and axonal degeneration were not increased. In this model, glial activation is thus unlikely to be caused by axonal pathology, and vice versa does not potentiate axonal degeneration. Our results support the concept that multiple myelin proteins have distinct roles in the long-term preservation of a healthy CNS, rather than in myelination per se. GLIA 2013;61:1832-1847
引用
收藏
页码:1832 / 1847
页数:16
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