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Publication : Property of lysosomal storage disease associated with midbrain pathology in the central nervous system of Lamp-2-deficient mice.

First Author  Furuta A Year  2015
Journal  Am J Pathol Volume  185
Issue  6 Pages  1713-23
PubMed ID  25998250 Mgi Jnum  J:222241
Mgi Id  MGI:5644184 Doi  10.1016/j.ajpath.2015.02.015
Citation  Furuta A, et al. (2015) Property of lysosomal storage disease associated with midbrain pathology in the central nervous system of lamp-2-deficient mice. Am J Pathol 185(6):1713-23
abstractText  Lysosome-associated membrane protein-2 (LAMP-2) is the gene responsible for Danon disease, which is characterized by cardiomyopathy, autophagic vacuolar myopathy, and variable mental retardation. To elucidate the function of LAMP-2 in the central nervous system, we investigated the neuropathological changes in Lamp-2-deficient mice. Immunohistochemical observations revealed that Lamp-1 and cathepsin D-positive lysosomal structures increased in the large neurons of the mouse brain. Ubiquitin-immunoreactive aggregates and concanavalin A-positive materials were detected in these neurons. By means of ultrastructural studies, we found various-shaped accumulations, including lipofuscin, glycolipid-like materials, and membranous structures, in the neurons and glial cells of Lamp-2-deficient brains. In deficient mice, glycogen granules accumulated in hepatocyte lysosomes but were not observed in neurons. These pathological features indicate lysosomal storage disease; however, the findings are unlikely a consequence of deficiency of a single lysosomal enzyme. Although previous study results have shown a large amount of autophagic vacuoles in parenchymal cells of the visceral organs, these findings were rarely detected in the brain tissue except for some axons in the substantia nigra, in which abundant activated microglial cells with increased lipid peroxidation were observed. Thus, LAMP-2 in the central nervous system has a possible role in the degradation of the various macromolecules in lysosomes and an additional function concerning protection from oxidative stress, especially in the substantia nigra.
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