Identification of Hot Regions of the Aβ-IAPP Interaction Interface as High-Affinity Binding Sites in both Cross- and Self-Association
Author:
Publisher
Wiley
Subject
General Chemistry,Catalysis
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1002/anie.200904902/fullpdf
Reference38 articles.
1. Protein Misfolding, Functional Amyloid, and Human Disease
2. Aspects on human amyloid forms and their fibril polypeptides
3. Ein IAPP-Mimetikum blockiert die zytotoxische Aggregation von Aβ – die Kreuzunterdrückung der Amyloidtoxizität von Aβ und IAPP deutet auf einen molekularen Zusammenhang zwischen Alzheimer-Krankheit und Typ-II-Diabetes hin
4. IAPP Mimic Blocks Aβ Cytotoxic Self-Assembly: Cross-Suppression of Amyloid Toxicity of Aβ and IAPP Suggests a Molecular Link between Alzheimer's Disease and Type II Diabetes
5. Amyloid-Kreuzwechselwirkung zur Inhibierung der Proteinaggregation, nicht aber der Proteinfunktion: Inhibierung der Insulinaggregation im nanomolaren Bereich durch ein IAPP-Mimetikum
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