aα-synuclein-lanthanide metal ions interaction: Binding sites, conformation and fibrillation

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Abstract

Background: The pathological hallmark of Parkinson's disease is the deposition of cytoplasmic neuronal inclusions termed Lewy bodies. The major component of Lewy bodies is amyloid fibrils of aα-synuclein. To investigate what causes aα-synuclein aggregation is essential to understand its pathological roles in Parkinson's disease. Various metal ions, including iron and copper, have been implicated in the pathogenesis of Parkinson's disease. Divalent metal ions can regulate aα-synuclein fibrillation rate, however, few studies have been performed to investigate how trivalent metal ions interact with aα-synuclein and their effect on aα-synuclein fibrillation. The study of the interaction between divalent and trivalent metal ions with aα-synuclein is of vital importance to realize the mechanism of aα-synuclein fibrillation. Results: Here we used nuclear magnetic resonance spectroscopy to determine the trivalent metal ions (lanthanides) binding sites in aα-synuclein. We found that lanthanide metal ions not only bind non-specifically to the C-terminal domain of aα-synuclein, but also transiently interact with residues contain carboxyl groups in the N-terminal and NAC regions, the latter binding sites were not found for divalent cations. In addition, lanthanide ions bound aα-synuclein exhibits slower conformational exchange rate. Compare to divalent cations, lanthanide ions accelerate aα-synuclein fibrillation much faster. Conclusions: We identified the lanthanide metal ions binding sites in aα-synuclein and found a hierarchal effect for lanthanide ions binding to aα-synuclein, driven by the interaction with aspartic acids and glutamic acids residues. Lanthanide ions binding also induced conformational dynamics change of aα-synuclein. Compared to divalent cations, lanthanide metal ions significantly accelerated aα-synuclein fibrillation, possibly due to the different inherent properties such as charge, binding sites and coordination modes.

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Bai, J., Zhang, Z., Liu, M., & Li, C. (2016). aα-synuclein-lanthanide metal ions interaction: Binding sites, conformation and fibrillation. BMC Biophysics, 9(1). https://doi.org/10.1186/s13628-016-0026-1

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