The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation
Abstract One of the hallmarks of the most common neurodegenerative disease, Alzheimer’s disease (AD), is the extracellular deposition and aggregation of Amyloid Beta (Aβ)-peptides in the brain. Previous studies have shown that select metal ions, most specifically copper (Cu) and zinc (Zn) ions, have...
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doaj-d0ec3b635d684dfc8f53839f454dbc952021-03-28T11:31:48ZengNature Publishing GroupScientific Reports2045-23222021-03-0111111110.1038/s41598-021-86060-1The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregationStéphane L. Benoit0Robert J. Maier1Department of Microbiology, The University of GeorgiaDepartment of Microbiology, The University of GeorgiaAbstract One of the hallmarks of the most common neurodegenerative disease, Alzheimer’s disease (AD), is the extracellular deposition and aggregation of Amyloid Beta (Aβ)-peptides in the brain. Previous studies have shown that select metal ions, most specifically copper (Cu) and zinc (Zn) ions, have a synergistic effect on the aggregation of Aβ-peptides. In the present study, inductively coupled plasma mass spectrometry (ICP-MS) was used to determine the metal content of a commercial recombinant human Aβ40 peptide. Cu and Zn were among the metals detected; unexpectedly, nickel (Ni) was one of the most abundant elements. Using a fluorescence-based assay, we found that Aβ40 peptide in vitro aggregation was enhanced by addition of Zn2+ and Ni2+, and Ni2+-induced aggregation was facilitated by acidic conditions. Nickel binding to Aβ40 peptide was confirmed by isothermal titration calorimetry. Addition of the Ni-specific chelator dimethylglyoxime (DMG) inhibited Aβ40 aggregation in absence of added metal, as well as in presence of Cu2+ and Ni2+, but not in presence of Zn2+. Finally, mass spectrometry analysis revealed that DMG can coordinate Cu or Ni, but not Fe, Se or Zn. Taken together, our results indicate that Ni2+ ions enhance, whereas nickel chelation inhibits, Aβ peptide in vitro aggregation. Hence, DMG-mediated Ni-chelation constitutes a promising approach towards inhibiting or slowing down Aβ40 aggregation.https://doi.org/10.1038/s41598-021-86060-1 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Stéphane L. Benoit Robert J. Maier |
spellingShingle |
Stéphane L. Benoit Robert J. Maier The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation Scientific Reports |
author_facet |
Stéphane L. Benoit Robert J. Maier |
author_sort |
Stéphane L. Benoit |
title |
The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation |
title_short |
The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation |
title_full |
The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation |
title_fullStr |
The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation |
title_full_unstemmed |
The nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation |
title_sort |
nickel-chelator dimethylglyoxime inhibits human amyloid beta peptide in vitro aggregation |
publisher |
Nature Publishing Group |
series |
Scientific Reports |
issn |
2045-2322 |
publishDate |
2021-03-01 |
description |
Abstract One of the hallmarks of the most common neurodegenerative disease, Alzheimer’s disease (AD), is the extracellular deposition and aggregation of Amyloid Beta (Aβ)-peptides in the brain. Previous studies have shown that select metal ions, most specifically copper (Cu) and zinc (Zn) ions, have a synergistic effect on the aggregation of Aβ-peptides. In the present study, inductively coupled plasma mass spectrometry (ICP-MS) was used to determine the metal content of a commercial recombinant human Aβ40 peptide. Cu and Zn were among the metals detected; unexpectedly, nickel (Ni) was one of the most abundant elements. Using a fluorescence-based assay, we found that Aβ40 peptide in vitro aggregation was enhanced by addition of Zn2+ and Ni2+, and Ni2+-induced aggregation was facilitated by acidic conditions. Nickel binding to Aβ40 peptide was confirmed by isothermal titration calorimetry. Addition of the Ni-specific chelator dimethylglyoxime (DMG) inhibited Aβ40 aggregation in absence of added metal, as well as in presence of Cu2+ and Ni2+, but not in presence of Zn2+. Finally, mass spectrometry analysis revealed that DMG can coordinate Cu or Ni, but not Fe, Se or Zn. Taken together, our results indicate that Ni2+ ions enhance, whereas nickel chelation inhibits, Aβ peptide in vitro aggregation. Hence, DMG-mediated Ni-chelation constitutes a promising approach towards inhibiting or slowing down Aβ40 aggregation. |
url |
https://doi.org/10.1038/s41598-021-86060-1 |
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