Immune Cells Contribute to Myelin Degeneration and Axonopathic Changes in Mice Overexpressing Proteolipid Protein in Oligodendrocytes
Open Access
- 2 August 2006
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 26 (31) , 8206-8216
- https://doi.org/10.1523/jneurosci.1921-06.2006
Abstract
Overexpression of the major myelin protein of the CNS, proteolipid protein (PLP), leads to late-onset degeneration of myelin and pathological changes in axons. Based on the observation that in white matter tracts of these mutants both CD8+ T-lymphocytes and CD11b+ macrophage-like cells are numerically elevated, we tested the hypothesis that these cells are pathologically involved in the primarily genetically caused neuropathy. Using flow cytometry of mutant brains, CD8+ cells could be identified as activated effector cells, and confocal microscopy revealed a close association of the T-cells with MHC-I+ (major histocompatibility complex class I positive) oligodendrocytes. Crossbreeding the myelin mutants with mice deficient in the recombination activating gene-1 (RAG-1) lacking mature T- and B-lymphocytes led to a reduction of the number of CD11b+ cells and to a substantial alleviation of pathological changes. In accordance with these findings, magnetic resonance imaging revealed less ventricular enlargement in the double mutants, partially because of more preserved corpora callosa. To investigate the role of CD8+ versus CD4+ T-lymphocytes, we reconstituted the myelin-RAG-1 double mutants with bone marrow from either CD8-negative (CD4+) or CD4-negative (CD8+) mice. The severe ventricular enlargement was only found when the double mutants were reconstituted with bone marrow from CD8+ mice, suggesting that the CD8+ lymphocytes play a critical role in the immune-related component of myelin degeneration in the mutants. These findings provide strong evidence that a primary glial damage can cause secondary immune reactions of pathological significance as it has been suggested for some forms of multiple sclerosis and other leukodystrophies.Keywords
This publication has 70 references indexed in Scilit:
- Primary progressive multiple sclerosis as a phenotype of a PLP1 gene mutationAnnals of Neurology, 2005
- Genomics, proteomics, metabolomics: what is in a word for multiple sclerosis?Current Opinion in Neurology, 2005
- Drug abuse: from gene through cell to behaviourCurrent Opinion in Pharmacology, 2005
- Immune-mediated components of hereditary demyelinating neuropathies: lessons from animal models and patientsThe Lancet Neurology, 2004
- Inflammation and degeneration in multiple sclerosisNeurological Sciences, 2003
- Overexpression of the myelin proteolipid protein leads to accumulation of cholesterol and proteolipid protein in endosomes/lysosomesThe Journal of cell biology, 2002
- Bone Marrow Transfer from Wild-Type Mice Reverts the Beneficial Effect of Genetically Mediated Immune Deficiency in Myelin MutantsMolecular and Cellular Neuroscience, 2001
- Activated Human T Cells, B Cells, and Monocytes Produce Brain-derived Neurotrophic Factor In Vitro and in Inflammatory Brain Lesions: A Neuroprotective Role of Inflammation?The Journal of Experimental Medicine, 1999
- Normal development and function of CD8+ cells but markedly decreased helper cell activity in mice lacking CD4Nature, 1991
- Local control of axonal properties by schwann cells: Neurofilaments and axonal transport in homologous and heterologous nerve graftsJournal of Neuroscience Research, 1991