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  1.  18
    Transcriptional regulation of APP by apoE: To boldly go where no isoform has gone before.Liying Corinne Lee, Michele Q. L. Goh & Edward H. Koo - 2017 - Bioessays 39 (9):1700062.
    Alzheimer's disease is the most common form of dementia that gradually disrupts the brain network to impair memory, language and cognition. While the amyloid hypothesis remains the leading proposed mechanism to explain AD pathophysiology, anti-amyloid therapeutic strategies have yet to translate into useful therapies, suggesting that amyloid β-protein and its precursor, the amyloid precursor protein are but a part of the disease cascade. Further, risk of AD can be modulated by a number of factors, the most impactful being the ɛ4 (...)
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  2.  24
    Cellular and molecular biology of alzheimer's disease.Donald L. Price, Edward H. Koo & Axel Unterbeck - 1989 - Bioessays 10 (2-3):69-74.
    Alzheimer's disease results from the degeneration of neurons. Degenerating nerve cells express atypical proteins, and amyloid is deposited. We suggest that some of these events are strongly influenced by genetic factors and age. Animal models should be useful in investigating the pathogenic mechanisms that lead to the brain abnormalities seen in this disease.
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  3.  9
    The – YENPTY – domain of the amyloid precursor protein: Much more than just endocytosis? ( C omment on DOI 10.1002/bies.201300041). [REVIEW]Hoang S. Nhan & Edward H. Koo - 2013 - Bioessays 35 (10):844-844.
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