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Ganglioside Metabolism in a Transgenic Mouse Model of Alzheimer's Disease: Expression of Chol-1α Antigens in the Brain
Author(s) -
Toshio Ariga,
Makoto Yanagisawa,
Chandramohan Wakade,
Susumu Ando,
Jerry J. Buccafusco,
Michael P. McDonald,
Robert K. Yu
Publication year - 2010
Publication title -
asn neuro
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.039
H-Index - 45
ISSN - 1759-0914
DOI - 10.1042/an20100021
Subject(s) - ganglioside , genetically modified mouse , biology , sialic acid , transgene , amyloid precursor protein , central nervous system , alzheimer's disease , presenilin , neurogenesis , human brain , cholinergic , biochemistry , endocrinology , microbiology and biotechnology , medicine , neuroscience , disease , gene
The accumulation of Aβ (amyloid β-protein) is one of the major pathological hallmarks in AD (Alzheimer's disease). Gangliosides, sialic acid-containing glycosphingolipids enriched in the nervous system and frequently used as biomarkers associated with the biochemical pathology of neurological disorders, have been suggested to be involved in the initial aggregation of Aβ. In the present study, we have examined ganglioside metabolism in the brain of a double-Tg (transgenic) mouse model of AD that co-expresses mouse/human chimaeric APP (amyloid precursor protein) with the Swedish mutation and human presenilin-1 with a deletion of exon 9. Although accumulation of Aβ was confirmed in the double-Tg mouse brains and sera, no statistically significant change was detected in the concentration and composition of major ganglio-N-tetraosyl-series gangliosides in the double-Tg brain. Most interestingly, Chol-1α antigens (cholinergic neuron-specific gangliosides), such as GTlaα and GQlbα, which are minor species in the brain, were found to be increased in the double-Tg mouse brain. We interpret that the occurrence of these gangliosides may represent evidence for generation of cholinergic neurons in the AD brain, as a result of compensatory neurogenesis activated by the presence of Aβ

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