Increased amyloid production from aberrant beta-amyloid precursor proteins.
Ziyang Zhong, Diana Quon, Linda S. Higgins, Jeffrey N. Higaki, Barbara Cordell
Abstract
Ziyang Zhong, Diana Quon, Linda S. Higgins, Jeffrey N. Higaki, Barbara Cordell
Abstract
The 4-kDa beta-amyloid protein that forms fibrillar deposits in Alzheimer's diseased brains is derived from a large precursor, the beta-amyloid precursor protein (beta-APP). Recently, it has been reported that beta-amyloid is normally produced and secreted by cultured mammalian cells. In our studies involving recombinant expression of beta-APP, increased yields of beta-amyloid were associated with expression of aberrant beta-APP molecules. Deletion mutations within the beta-amyloid domain, incorrect beta-APP isoform expression in fibroblasts or neuronal cells, or excess amounts of beta-APP all led to increases in beta-amyloid production. Aberrant beta-APP appears to be diverted from the secretory pathway and then degraded to beta-amyloid.
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The 4-kDa beta-amyloid protein that forms fibrillar deposits in Alzheimer's diseased brains is derived from a large precursor, the beta-amyloid precursor protein (beta-APP). Recently, it has been reported that beta-amyloid is normally produced and secreted by cultured mammalian cells. In our studies involving recombinant expression of beta-APP, increased yields of beta-amyloid were associated with expression of aberrant beta-APP molecules. Deletion mutations within the beta-amyloid domain, incorrect beta-APP isoform expression in fibroblasts or neuronal cells, or excess amounts of beta-APP all led to increases in beta-amyloid production. Aberrant beta-APP appears to be diverted from the secretory pathway and then degraded to beta-amyloid.
Key concepts: Amyloid (mycology), Biochemistry of Alzheimer's disease, BETA (programming language), Amyloid precursor protein, P3 peptide, Chemistry, Amyloid beta, Biochemistry