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BRCA1 may modulate neuronal cell cycle re-entry in Alzheimer disease.

Abstract
In Alzheimer disease, neuronal degeneration and the presence of neurofibrillary tangles correlate with the severity of cognitive decline. Neurofibrillary tangles contain the antigenic profile of many cell cycle markers, reflecting a re-entry into the cell cycle by affected neurons. However, while such a cell cycle re-entry phenotype is an early and consistent feature of Alzheimer disease, the mechanisms responsible for neuronal cell cycle are unclear. In this regard, given that a dysregulated cell cycle is a characteristic of cancer, we speculated that alterations in oncogenic proteins may play a role in neurodegeneration. To this end, in this study, we examined brain tissue from cases of Alzheimer disease for the presence of BRCA1, a known regulator of cell cycle, and found intense and specific localization of BRCA1 to neurofibrillary tangles, a hallmark lesion of the disease. Analysis of clinically normal aged brain tissue revealed systematically less BRCA1, and surprisingly in many cases with apparent phosphorylated tau-positive neurofibrillary tangles, BRCA1 was absent, yet BRCA1 was present in all cases of Alzheimer disease. These findings not only further define the cell cycle reentry phenotype in Alzheimer disease but also indicate that the neurofibrillary tangles which define Alzheimer disease may have a different genesis from the neurofibrillary tangles of normal aging.
AuthorsTeresa A Evans, Arun K Raina, André Delacourte, Olga Aprelikova, Hyoung-gon Lee, Xiongwei Zhu, George Perry, Mark A Smith
JournalInternational journal of medical sciences (Int J Med Sci) Vol. 4 Issue 3 Pg. 140-5 (May 12 2007) ISSN: 1449-1907 [Electronic] Australia
PMID17505559 (Publication Type: Journal Article, Research Support, N.I.H., Intramural, Research Support, Non-U.S. Gov't)
Chemical References
  • BRCA1 Protein
Topics
  • Aged
  • Aged, 80 and over
  • Aging (physiology)
  • Alzheimer Disease (physiopathology)
  • BRCA1 Protein (analysis, physiology)
  • Cell Cycle (physiology)
  • Humans
  • Middle Aged
  • Neurofibrillary Tangles (chemistry)
  • Neurons (physiology)

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