TY - JOUR
T1 - Nucleoside-2′,3′/3′,5′-bis(thio)phosphate antioxidants are also capable of disassembly of amyloid beta42-Zn(II)/Cu(II) aggregates
T2 - Via Zn(II)/Cu(II)-chelation
AU - Hevroni, Bosmat Levi
AU - Major, Dan Thomas
AU - Dixit, Mudit
AU - Mhashal, Anil Ranu
AU - Das, Susanta
AU - Fischer, Bilha
N1 - Publisher Copyright:
© The Royal Society of Chemistry 2016.
PY - 2016/5/18
Y1 - 2016/5/18
N2 - Currently, there is an urgent need for biocompatible metal-ion chelators capable of antioxidant activity and disassembly of amyloid beta (Aβ)-aggregates as potential therapeutics for Alzheimer's disease (AD). We recently demonstrated the promising antioxidant activity of adenine/guanine 2′,3′ or 3′,5′-bis(thio)phosphate analogues, 2′-dA/G3′5′PO/S and A2′3′PO/S, and their affinity to Zn(ii)-ions. These findings encouraged us to evaluate them as agents for the dissolution of Aβ42-Zn(ii)/Cu(ii) aggregates. Specifically, we explored their ability to bind Cu(ii)/Zn(ii)-ions, the geometry and stoichiometry of these complexes, Cu(ii)/Zn(ii)-binding-sites and binding mode, and the ability of these analogues to dissolve Aβ42-Zn(ii)/Cu(ii) aggregates, as well as their effect on the secondary structure of those aggregates. Finally, we identified the most promising agents for dissolution of Aβ42-Zn(ii)/Cu(ii) aggregates. Specifically, we observed the formation of a 1:1 complex between 2′-dG3′5′PO and Cu(ii), involving O4 ligands. Zn(ii) was coordinated by both thiophosphate groups of 2′-dA3′5′PS and A2′3′PS involving O2S2 ligands in a 1:1 stoichiometry. A2′3′PS dissolves Aβ42-Zn(ii) and Aβ42-Cu(ii) aggregates as effectively as, and 2.5-fold more effectively than EDTA, respectively. Furthermore, 2′-dG3′5′PS and A2′3′PS reverted the Aβ42-M(ii) structure, back to that of the free Aβ42. Finally, cryo-TEM and TEM images confirmed the disassembly of Aβ42 and Aβ42-M(ii) aggregates by A2′3′PS. Hence, 2′-dG3′5′PS and A2′3′PS may serve as promising scaffolds for new AD therapeutics, acting as both effective antioxidants and agents for solubilization of Aβ42-Cu(ii)/Zn(ii) aggregates.
AB - Currently, there is an urgent need for biocompatible metal-ion chelators capable of antioxidant activity and disassembly of amyloid beta (Aβ)-aggregates as potential therapeutics for Alzheimer's disease (AD). We recently demonstrated the promising antioxidant activity of adenine/guanine 2′,3′ or 3′,5′-bis(thio)phosphate analogues, 2′-dA/G3′5′PO/S and A2′3′PO/S, and their affinity to Zn(ii)-ions. These findings encouraged us to evaluate them as agents for the dissolution of Aβ42-Zn(ii)/Cu(ii) aggregates. Specifically, we explored their ability to bind Cu(ii)/Zn(ii)-ions, the geometry and stoichiometry of these complexes, Cu(ii)/Zn(ii)-binding-sites and binding mode, and the ability of these analogues to dissolve Aβ42-Zn(ii)/Cu(ii) aggregates, as well as their effect on the secondary structure of those aggregates. Finally, we identified the most promising agents for dissolution of Aβ42-Zn(ii)/Cu(ii) aggregates. Specifically, we observed the formation of a 1:1 complex between 2′-dG3′5′PO and Cu(ii), involving O4 ligands. Zn(ii) was coordinated by both thiophosphate groups of 2′-dA3′5′PS and A2′3′PS involving O2S2 ligands in a 1:1 stoichiometry. A2′3′PS dissolves Aβ42-Zn(ii) and Aβ42-Cu(ii) aggregates as effectively as, and 2.5-fold more effectively than EDTA, respectively. Furthermore, 2′-dG3′5′PS and A2′3′PS reverted the Aβ42-M(ii) structure, back to that of the free Aβ42. Finally, cryo-TEM and TEM images confirmed the disassembly of Aβ42 and Aβ42-M(ii) aggregates by A2′3′PS. Hence, 2′-dG3′5′PS and A2′3′PS may serve as promising scaffolds for new AD therapeutics, acting as both effective antioxidants and agents for solubilization of Aβ42-Cu(ii)/Zn(ii) aggregates.
UR - http://www.scopus.com/inward/record.url?scp=84971321469&partnerID=8YFLogxK
U2 - 10.1039/c6ob00613b
DO - 10.1039/c6ob00613b
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C2 - 27109038
SN - 1477-0520
VL - 14
SP - 4640
EP - 4653
JO - Organic and Biomolecular Chemistry
JF - Organic and Biomolecular Chemistry
IS - 20
ER -