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Redox reactions of the ?-synuclein-Cu(2+) complex and their effects on neuronal cell viability.


ABSTRACT: ?-Synuclein (?-syn), a presynaptic protein believed to play an important role in neuropathology in Parkinson's disease (PD), is known to bind Cu(2+). Cu(2+) has been shown to accelerate the aggregation of ?-syn to form various toxic aggregates in vitro. Copper is also a redox-active metal whose complexes with amyloidogenic proteins/peptides have been linked to oxidative stress in major neurodegenerative diseases. In this work, the formation of the Cu(2+) complex with ?-syn or with an N-terminal peptide, ?-syn(1-19), was confirmed with electrospray-mass spectrometry (ES-MS). The redox potentials of the Cu(2+) complex with ?-syn (?-syn-Cu(2+)) and ?-syn(1-19) were determined to be 0.018 and 0.053 V, respectively. Furthermore, the Cu(2+) center(s) can be readily reduced to Cu(+), and possible reactions of ?-syn-Cu(2+) with cellular species (e.g., O(2), ascorbic acid, and dopamine) were investigated. The occurrence of a redox reaction can be rationalized by comparing the redox potential of the ?-syn-Cu(2+) complex to that of the specific cellular species. For example, ascorbic acid can directly reduce ?-syn-Cu(2+) to ?-syn-Cu(+), setting up a redox cycle in which O(2) is reduced to H(2)O(2) and cellular redox species is continuously exhausted. In addition, the H(2)O(2) generated was demonstrated to reduce viability of the neuroblastoma SY-HY5Y cells. Although our results ruled out the direct oxidation of dopamine by ?-syn-Cu(2+), the H(2)O(2) generated in the presence of ?-syn-Cu(2+) can oxidize dopamine. Our results suggest that oxidative stress is at least partially responsible for the loss of dopaminergic cells in PD brain and reveal the multifaceted role of the ?-syn-Cu(2+) complex in oxidative stress associated with PD symptoms.

SUBMITTER: Wang C 

PROVIDER: S-EPMC2939719 | biostudies-literature | 2010 Sep

REPOSITORIES: biostudies-literature

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Redox reactions of the α-synuclein-Cu(2+) complex and their effects on neuronal cell viability.

Wang Chengshan C   Liu Lin L   Zhang Lin L   Peng Yong Y   Zhou Feimeng F  

Biochemistry 20100901 37


α-Synuclein (α-syn), a presynaptic protein believed to play an important role in neuropathology in Parkinson's disease (PD), is known to bind Cu(2+). Cu(2+) has been shown to accelerate the aggregation of α-syn to form various toxic aggregates in vitro. Copper is also a redox-active metal whose complexes with amyloidogenic proteins/peptides have been linked to oxidative stress in major neurodegenerative diseases. In this work, the formation of the Cu(2+) complex with α-syn or with an N-terminal  ...[more]

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