The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent

<p>The goal of this project was to design a new kind of tagged supramolecular structural motif. These systems are modular in design and able to bind to DNA. The motif can be represented as TAG-LA-BL-BAS (TAG = NMR active phosphine ligand, LA = light absorber, BL = bridging ligand and BAS = bio...

Full description

Bibliographic Details
Main Author: Fang, Zhenglai
Other Authors: Chemistry
Format: Others
Published: Virginia Tech 2014
Subjects:
DNA
Online Access:http://hdl.handle.net/10919/33393
http://scholar.lib.vt.edu/theses/available/etd-06032001-150313/
id ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-33393
record_format oai_dc
spelling ndltd-VTETD-oai-vtechworks.lib.vt.edu-10919-333932020-09-26T05:37:02Z The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent Fang, Zhenglai Chemistry Brewer, Karen J. Kingston, David G. I. Hanson, Brian E. Winkel, Brenda S. J. ruthenium supramolecular cisplatin platinum binding DNA <p>The goal of this project was to design a new kind of tagged supramolecular structural motif. These systems are modular in design and able to bind to DNA. The motif can be represented as TAG-LA-BL-BAS (TAG = NMR active phosphine ligand, LA = light absorber, BL = bridging ligand and BAS = bioactive site). The TAG provides a NMR probe for the characterization of supramolecular complexes as well as for the future investigation of the metal complexâ DNA interaction process. In this project the phosphorous ligand PEt2Ph was selected as the TAG due its ability to provide an easy 31 P NMR probe in the research. The LA represents the light absorber which could be photoexcited by photons of proper energy, here a Ru II (tpy)(PEt2Ph)(BL) chromophore is used. The bridging ligands are those bidentate polyazine ligands that can connect two metal center together in a polymetallic system and have a low energy ð * orbital. The BAS represents the bioactive sites for binding to DNA, in this case the cis-Pt II Cl2 moiety based on previous studies with cisplatin.</p> <p>The Ru-Pt bimetallic complexes [(tpy)Ru(PEt2Ph)(BL)PtCl2](PF6)2 (BL = bpm or dpp) and their precursors were designed, successfully synthesized and characterized. The synthesis followed a building block approach, allowing variation of the supramolecular system. The final bimetallic complexes were made without need for Al2O3 column chromatograph, important due to the presence of the labile Pt II Cl2 center. </P><p> The bimetallic complexes and all of their monometallic precursors were fully characterized by FAB MS, electrochemistry, electronic absorption and 31 P NMR spectroscopy. The Ru-Pt bimetallic complex containing the bpm bridging ligand and its precursors were also characterized by 1 H NMR. The FAB MS spectra of the complexes is characterized by the appearance of the parent ion peaks [M-PF6] + and [M-2PF6] + . The cyclic voltammogram of all complexes show metal based oxidation(s) and ligand based reductions. The electronic absorption spectra of the complexes are characteristic of the lowest lying Ru to bridging ligand MLCT (metal to ligand charge transfer) transition with higher energy bridging and terminal ligand based Pi to Pi* transitions. The electronic absorption data are consistent with the electrochemical data. The 31 P NMR technique provides an efficient and easy characterization method for the complexes, showing the utility of this structural moiety.</p> <p> The DNA binding activity of the bimetallic complexes were studied by non-denaturing agarose gel electrophoresis and the results show that these tagged bimetallic complexes can bind to DNA through the cis-Pt II Cl2 moiety. This binding has a more pronounced retardation effect on DNA migration than cis-[Pt(NH3)2Cl2] (cisplatin), but less than [Ru(bpy)2(dpq)PtCl2](CF3SO3)2. The DNA binding study establishes these bimetallic complexes with a NMR tag ligand, PEt2Ph, as a new kind of DNA binding agent.</p> Master of Science 2014-03-14T20:39:15Z 2014-03-14T20:39:15Z 2000-10-23 2001-06-03 2002-06-14 2001-06-14 Thesis etd-06032001-150313 http://hdl.handle.net/10919/33393 http://scholar.lib.vt.edu/theses/available/etd-06032001-150313/ Thesis_Fang.pdf In Copyright http://rightsstatements.org/vocab/InC/1.0/ application/pdf Virginia Tech
collection NDLTD
format Others
sources NDLTD
topic ruthenium
supramolecular
cisplatin
platinum
binding
DNA
spellingShingle ruthenium
supramolecular
cisplatin
platinum
binding
DNA
Fang, Zhenglai
The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent
description <p>The goal of this project was to design a new kind of tagged supramolecular structural motif. These systems are modular in design and able to bind to DNA. The motif can be represented as TAG-LA-BL-BAS (TAG = NMR active phosphine ligand, LA = light absorber, BL = bridging ligand and BAS = bioactive site). The TAG provides a NMR probe for the characterization of supramolecular complexes as well as for the future investigation of the metal complexâ DNA interaction process. In this project the phosphorous ligand PEt2Ph was selected as the TAG due its ability to provide an easy 31 P NMR probe in the research. The LA represents the light absorber which could be photoexcited by photons of proper energy, here a Ru II (tpy)(PEt2Ph)(BL) chromophore is used. The bridging ligands are those bidentate polyazine ligands that can connect two metal center together in a polymetallic system and have a low energy ð * orbital. The BAS represents the bioactive sites for binding to DNA, in this case the cis-Pt II Cl2 moiety based on previous studies with cisplatin.</p> <p>The Ru-Pt bimetallic complexes [(tpy)Ru(PEt2Ph)(BL)PtCl2](PF6)2 (BL = bpm or dpp) and their precursors were designed, successfully synthesized and characterized. The synthesis followed a building block approach, allowing variation of the supramolecular system. The final bimetallic complexes were made without need for Al2O3 column chromatograph, important due to the presence of the labile Pt II Cl2 center. </P><p> The bimetallic complexes and all of their monometallic precursors were fully characterized by FAB MS, electrochemistry, electronic absorption and 31 P NMR spectroscopy. The Ru-Pt bimetallic complex containing the bpm bridging ligand and its precursors were also characterized by 1 H NMR. The FAB MS spectra of the complexes is characterized by the appearance of the parent ion peaks [M-PF6] + and [M-2PF6] + . The cyclic voltammogram of all complexes show metal based oxidation(s) and ligand based reductions. The electronic absorption spectra of the complexes are characteristic of the lowest lying Ru to bridging ligand MLCT (metal to ligand charge transfer) transition with higher energy bridging and terminal ligand based Pi to Pi* transitions. The electronic absorption data are consistent with the electrochemical data. The 31 P NMR technique provides an efficient and easy characterization method for the complexes, showing the utility of this structural moiety.</p> <p> The DNA binding activity of the bimetallic complexes were studied by non-denaturing agarose gel electrophoresis and the results show that these tagged bimetallic complexes can bind to DNA through the cis-Pt II Cl2 moiety. This binding has a more pronounced retardation effect on DNA migration than cis-[Pt(NH3)2Cl2] (cisplatin), but less than [Ru(bpy)2(dpq)PtCl2](CF3SO3)2. The DNA binding study establishes these bimetallic complexes with a NMR tag ligand, PEt2Ph, as a new kind of DNA binding agent.</p> === Master of Science
author2 Chemistry
author_facet Chemistry
Fang, Zhenglai
author Fang, Zhenglai
author_sort Fang, Zhenglai
title The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent
title_short The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent
title_full The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent
title_fullStr The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent
title_full_unstemmed The synthesis and characterization of a new kind of tagged Ru-Pt bimetallic DNA binding agent
title_sort synthesis and characterization of a new kind of tagged ru-pt bimetallic dna binding agent
publisher Virginia Tech
publishDate 2014
url http://hdl.handle.net/10919/33393
http://scholar.lib.vt.edu/theses/available/etd-06032001-150313/
work_keys_str_mv AT fangzhenglai thesynthesisandcharacterizationofanewkindoftaggedruptbimetallicdnabindingagent
AT fangzhenglai synthesisandcharacterizationofanewkindoftaggedruptbimetallicdnabindingagent
_version_ 1719342326016376832