Cleavage of Lipids and DNA by Metal Ions and Complexes

Metal ions and complexes utilized as cleavage agents have influenced many synthetic approaches of scientists to assist in the cleavage and transformation of biomolecules. These metal-based synthetic cleavage agents have potential applications in biotechnology or as molecular therapeutic agents. Her...

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Main Author: Williams, Dominique
Format: Others
Published: ScholarWorks @ Georgia State University 2014
Subjects:
DNA
Online Access:http://scholarworks.gsu.edu/chemistry_diss/94
http://scholarworks.gsu.edu/cgi/viewcontent.cgi?article=1099&context=chemistry_diss
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spelling ndltd-GEORGIA-oai-scholarworks.gsu.edu-chemistry_diss-10992014-06-17T15:45:10Z Cleavage of Lipids and DNA by Metal Ions and Complexes Williams, Dominique Metal ions and complexes utilized as cleavage agents have influenced many synthetic approaches of scientists to assist in the cleavage and transformation of biomolecules. These metal-based synthetic cleavage agents have potential applications in biotechnology or as molecular therapeutic agents. Herein, we have examined Ce(IV) metal ion and complexes as acidic hydrolytic agents in lipid hydrolysis reactions (Chapter 2 and 3), and a copper(II) complex that photo-oxidizes DNA upon exposure to ultraviolet light (Chapter 4). In Chapter 2 we examined the hydrolysis of sphingomyelin vesicles by Ce(NH4)2(NO3)6 (Ce(IV)) and compared the results to twelve d- and f-block metal salts, hydrolysis of mixed lipid vesicles and mixed micelles of sphingomyelin by Ce(IV), and hydrolysis of phosphatidylcholine vesicles by Ce(IV), using either MALDI-TOF mass spectrometry or colorimetric assays. In Chapter 3, we described the study of a Ce(IV) complex based on 1,3-bis[tris(hydroxymethyl)methylamino]propane as a potential acidic hydrolytic agent of phospholipids using colorimetric assays and NMR spectroscopy. The hydrolytic agent provided markedly enhance hydrolysis at lysosomal pH (~ 4.8), but suppress hydrolysis when pH was raised to near-neutral pH (~ 7.2). This was due to the pKa values of the donor atoms of the ligand, in which the metal’s electrophilicity was reduced to a greater extent at ~ pH 7.2 compared to ~ pH 4.8. Chapter 4 describes the synthesis and study of a Cu(II) complex based on a hexaazatriphenylene derivative for photo-assisted cleavage of double-helical DNA. Scavenger and chemical assays suggested the formation of DNA damaging reactive oxygen species, hydroxyl and superoxide radicals, and hydrogen peroxide, in the photocleavage reactions. Thermal denaturation and UV-vis absorption studies suggested that the Cu(II) complex binds in a non-intercalative fashion to duplex DNA. 2014-08-12T07:00:00Z text application/pdf http://scholarworks.gsu.edu/chemistry_diss/94 http://scholarworks.gsu.edu/cgi/viewcontent.cgi?article=1099&context=chemistry_diss Chemistry Dissertations ScholarWorks @ Georgia State University Hydrolysis Cerium(IV) Phospholipid DNA Photocleavage External binding
collection NDLTD
format Others
sources NDLTD
topic Hydrolysis
Cerium(IV)
Phospholipid
DNA
Photocleavage
External binding
spellingShingle Hydrolysis
Cerium(IV)
Phospholipid
DNA
Photocleavage
External binding
Williams, Dominique
Cleavage of Lipids and DNA by Metal Ions and Complexes
description Metal ions and complexes utilized as cleavage agents have influenced many synthetic approaches of scientists to assist in the cleavage and transformation of biomolecules. These metal-based synthetic cleavage agents have potential applications in biotechnology or as molecular therapeutic agents. Herein, we have examined Ce(IV) metal ion and complexes as acidic hydrolytic agents in lipid hydrolysis reactions (Chapter 2 and 3), and a copper(II) complex that photo-oxidizes DNA upon exposure to ultraviolet light (Chapter 4). In Chapter 2 we examined the hydrolysis of sphingomyelin vesicles by Ce(NH4)2(NO3)6 (Ce(IV)) and compared the results to twelve d- and f-block metal salts, hydrolysis of mixed lipid vesicles and mixed micelles of sphingomyelin by Ce(IV), and hydrolysis of phosphatidylcholine vesicles by Ce(IV), using either MALDI-TOF mass spectrometry or colorimetric assays. In Chapter 3, we described the study of a Ce(IV) complex based on 1,3-bis[tris(hydroxymethyl)methylamino]propane as a potential acidic hydrolytic agent of phospholipids using colorimetric assays and NMR spectroscopy. The hydrolytic agent provided markedly enhance hydrolysis at lysosomal pH (~ 4.8), but suppress hydrolysis when pH was raised to near-neutral pH (~ 7.2). This was due to the pKa values of the donor atoms of the ligand, in which the metal’s electrophilicity was reduced to a greater extent at ~ pH 7.2 compared to ~ pH 4.8. Chapter 4 describes the synthesis and study of a Cu(II) complex based on a hexaazatriphenylene derivative for photo-assisted cleavage of double-helical DNA. Scavenger and chemical assays suggested the formation of DNA damaging reactive oxygen species, hydroxyl and superoxide radicals, and hydrogen peroxide, in the photocleavage reactions. Thermal denaturation and UV-vis absorption studies suggested that the Cu(II) complex binds in a non-intercalative fashion to duplex DNA.
author Williams, Dominique
author_facet Williams, Dominique
author_sort Williams, Dominique
title Cleavage of Lipids and DNA by Metal Ions and Complexes
title_short Cleavage of Lipids and DNA by Metal Ions and Complexes
title_full Cleavage of Lipids and DNA by Metal Ions and Complexes
title_fullStr Cleavage of Lipids and DNA by Metal Ions and Complexes
title_full_unstemmed Cleavage of Lipids and DNA by Metal Ions and Complexes
title_sort cleavage of lipids and dna by metal ions and complexes
publisher ScholarWorks @ Georgia State University
publishDate 2014
url http://scholarworks.gsu.edu/chemistry_diss/94
http://scholarworks.gsu.edu/cgi/viewcontent.cgi?article=1099&context=chemistry_diss
work_keys_str_mv AT williamsdominique cleavageoflipidsanddnabymetalionsandcomplexes
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