Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase

Superoxide dismutases are ubiquitous enzymes that efficiently catalyze the disproportionation of superoxide radical anions to protect biological molecules from oxidative damage. Several SODs have been identified having different metals at their active sites. These include Mn SOD, Fe SOD, Cu/Zn SOD a...

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Main Author: Mwania, Tom Muinde
Other Authors: Eichhorn, David M.
Format: Others
Language:en_US
Published: Wichita State University 2012
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Online Access:http://hdl.handle.net/10057/5416
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spelling ndltd-WICHITA-oai-soar.wichita.edu-10057-54162013-04-19T21:00:14ZSynthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutaseMwania, Tom MuindeElectronic dissertationsSuperoxide dismutases are ubiquitous enzymes that efficiently catalyze the disproportionation of superoxide radical anions to protect biological molecules from oxidative damage. Several SODs have been identified having different metals at their active sites. These include Mn SOD, Fe SOD, Cu/Zn SOD and, most recently, Ni SOD. The catalytic center of Ni SOD resides in the N-terminal active-site loop, where a Ni(II) is coordinated by the amine N of His-1, the amide N of Cys-2, and two thiolate S atoms of Cys-2 and Cys-6. In the oxidized form, Ni(III) adds the imidazole N of His-1 as an axial ligand. For the past decade, we have been developing methodology using 2, 2’-dithiodibenzaldehyde (DTDB) for the synthesis of metal complexes with mixed N/S coordination. We are reporting on the application of this methodology to the synthesis of model complexes for the active site of NiSOD, in which we have successfully synthesized and characterized three NiIIN2S2 complexes of imine/amine N donors: Ni(NNS)SPh (1), Ni(NNS)SPhNO2 (2) and Ni(NNS)StBu (3). These may be used as a model for reduced NiSOD, with future plans of comparing to complexes with amide/amine N donors, thus establishing the role of the amide.Thesis (M.S.)--Wichita State University, College of Liberal Arts and Sciences, Dept. of ChemistryWichita State UniversityEichhorn, David M.2012-12-03T22:01:38Z2012-12-03T22:01:38Z20122012-05Thesisxv, 86, p.t12032http://hdl.handle.net/10057/5416en_USCopyright Tom Muinde Mwania, 2012. All rights reserved
collection NDLTD
language en_US
format Others
sources NDLTD
topic Electronic dissertations
spellingShingle Electronic dissertations
Mwania, Tom Muinde
Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
description Superoxide dismutases are ubiquitous enzymes that efficiently catalyze the disproportionation of superoxide radical anions to protect biological molecules from oxidative damage. Several SODs have been identified having different metals at their active sites. These include Mn SOD, Fe SOD, Cu/Zn SOD and, most recently, Ni SOD. The catalytic center of Ni SOD resides in the N-terminal active-site loop, where a Ni(II) is coordinated by the amine N of His-1, the amide N of Cys-2, and two thiolate S atoms of Cys-2 and Cys-6. In the oxidized form, Ni(III) adds the imidazole N of His-1 as an axial ligand. For the past decade, we have been developing methodology using 2, 2’-dithiodibenzaldehyde (DTDB) for the synthesis of metal complexes with mixed N/S coordination. We are reporting on the application of this methodology to the synthesis of model complexes for the active site of NiSOD, in which we have successfully synthesized and characterized three NiIIN2S2 complexes of imine/amine N donors: Ni(NNS)SPh (1), Ni(NNS)SPhNO2 (2) and Ni(NNS)StBu (3). These may be used as a model for reduced NiSOD, with future plans of comparing to complexes with amide/amine N donors, thus establishing the role of the amide. === Thesis (M.S.)--Wichita State University, College of Liberal Arts and Sciences, Dept. of Chemistry
author2 Eichhorn, David M.
author_facet Eichhorn, David M.
Mwania, Tom Muinde
author Mwania, Tom Muinde
author_sort Mwania, Tom Muinde
title Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
title_short Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
title_full Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
title_fullStr Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
title_full_unstemmed Synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
title_sort synthesis and characterization of nickel imine/amine complexes; a possible model for nickel superoxide dismutase
publisher Wichita State University
publishDate 2012
url http://hdl.handle.net/10057/5416
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