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Cu2+-binding to S100B triggers polymerization of disulfide cross-linked tetramers with enhanced chaperone activity
Joana S Cristóvão1, Guilherme G Moreira, Filipe E P Rodrigues
1Biosystems and Integrative Sciences Institute, Faculdade de Ciências, Universidade de Lisboa, Lisboa 1749-016, Portugal. cmgomes@fc.ul.pt.
Abstract:
S100B is an extracellular protein implicated in Alzheimer's Disease and a suppressor of amyloid-β aggregation. Herein we report a mechanism tying Cu2+ binding to a change in assembly state yielding disulfide cross-linked oligomers with higher anti-aggregation activity. This chemical control of chaperone function illustrates a regulatory process relevant under metal and proteostasis dysfunction as in neurodegeneration.
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