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Modeling the natural history of Pelizaeus-Merzbacher disease.


ABSTRACT: Major gaps in our understanding of the leukodystrophies result from their rarity and the lack of tissue for the interdisciplinary studies required to extend our knowledge of the pathophysiology of the diseases. This study details the natural evolution of changes in the CNS of the shaking pup (shp), a model of the classical form of the X-linked disorder Pelizaeus-Merzbacher disease, in particular in glia, myelin, and axons, which is likely representative of what occurs over time in the human disease. The mutation in the proteolipid protein gene, PLP1, leads to a delay in differentiation, increased cell death, and a marked distension of the rough endoplasmic reticulum in oligodendrocytes. However, over time, more oligodendrocytes differentiate and survive in the spinal cord leading to an almost total recovery of myelination, In contrast, the brain remains persistently hypomyelinated. These data suggest that shp oligodendrocytes may be more functional than previously realized and that their early recruitment could have therapeutic value.

SUBMITTER: Mayer JA 

PROVIDER: S-EPMC4492172 | biostudies-other | 2015 Mar

REPOSITORIES: biostudies-other

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Modeling the natural history of Pelizaeus-Merzbacher disease.

Mayer Joshua A JA   Griffiths Ian R IR   Goldman James E JE   Smith Chelsey M CM   Cooksey Elizabeth E   Radcliff Abigail B AB   Duncan Ian D ID  

Neurobiology of disease 20150103


Major gaps in our understanding of the leukodystrophies result from their rarity and the lack of tissue for the interdisciplinary studies required to extend our knowledge of the pathophysiology of the diseases. This study details the natural evolution of changes in the CNS of the shaking pup (shp), a model of the classical form of the X-linked disorder Pelizaeus-Merzbacher disease, in particular in glia, myelin, and axons, which is likely representative of what occurs over time in the human dise  ...[more]

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