This proposal is aimed at using a series of unnatural nucleosides to interrogate nucleic acid structure and function. Drawing inspiration from Nelson Leonard's benzene-expanded adenosine analogues, we will vary the width of the nucleobases, and subsequently the DNA helix, by introduction of diversity into the natural purine and pyrimidine scaffolds. Incorporation of either a pyrrole, thiophene or furan spacer ring into the heteroaromatic architecture will provide unique structural advantages not possible with previously studied base pairs. This research will address some fundamental scientific questions by providing new insights into the physical aspects of DNA helix stability and the role that electrostatics and base stacking play. It will also provide useful data regarding the effect nucleobase shape, base stacking and electrostatics have on DNA polymerase replication. We predict that the advantages provided by the heteroaromatic spacer rings will contribute significantly to enhanced base stacking, due to increased electrostatic surface area, as well as increased dispersion and van der Waals forces and polarizability. Furthermore, the heteroaromatic spacer rings possess the ability to hydrogen bond with cations or with water present in the spine of hydration of the helix. As a result, we also predict a significant increase in DNA helix stability will be observed. In addition, these extended bases are fluorescent and could prove useful in many applications, such self-reporters of helix formation, tracking single point mutations, as well as in synthetic DNA microarrays. The initial aims of this study are to (i) design, synthesize and characterize a series of extended pyrimidines and expanded purine nucleosides;(ii) to incorporate the unnatural nucleosides into DNA duplexes of varying length and composition;(iii) to computationally, spectroscopically, thermodynamically and structurally characterize the resulting helices;and (iv) evaluate their effect on DNA polymerase fidelity.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
3R01GM073645-04S1
Application #
7931182
Study Section
Special Emphasis Panel (ZRG1-BPC-B (02))
Program Officer
Preusch, Peter C
Project Start
2009-09-30
Project End
2011-04-30
Budget Start
2009-09-30
Budget End
2011-04-30
Support Year
4
Fiscal Year
2009
Total Cost
$155,913
Indirect Cost
Name
University of Maryland Balt CO Campus
Department
Engineering (All Types)
Type
Schools of Engineering
DUNS #
061364808
City
Baltimore
State
MD
Country
United States
Zip Code
21250
Cawrse, Brian M; Lapidus, Rena S; Cooper, Brandon et al. (2018) Anticancer Properties of Halogenated Pyrrolo[3,2-d]pyrimidines with Decreased Toxicity via N5 Substitution. ChemMedChem 13:178-185
Temburnikar, Kartik W; Ross, Christina R; Wilson, Gerald M et al. (2015) Antiproliferative activities of halogenated pyrrolo[3,2-d]pyrimidines. Bioorg Med Chem 23:4354-63
Temburnikar, Kartik W; Zimmermann, Sarah C; Kim, Nathaniel T et al. (2014) Antiproliferative activities of halogenated thieno[3,2-d]pyrimidines. Bioorg Med Chem 22:2113-22
Temburnikar, Kartik; Brace, Kelin; Seley-Radtke, Katherine L (2013) Synthesis of 2'-deoxy-9-deaza nucleosides using Heck methodology. J Org Chem 78:7305-11
Temburnikar, Kartik; Zhang, Zhibo; Seley-Radtke, Katherine (2012) Modified synthesis of 3'-O-TBDPS-protected furanoid glycal. Nucleosides Nucleotides Nucleic Acids 31:319-27
Wauchope, Orrette R; Johnson, Cameron; Krishnamoorthy, Pasupathy et al. (2012) Synthesis and biological evaluation of a series of thieno-expanded tricyclic purine 2'-deoxy nucleoside analogues. Bioorg Med Chem 20:3009-15
Wauchope, Orrette R; Tomney, Matthew J; Pepper, Joseph L et al. (2010) Tricyclic 2'-C-modified nucleosides as potential anti-HCV therapeutics. Org Lett 12:4466-9
Zhang, Zhibo; Wauchope, Orrette R; Seley-Radtke, Katherine L (2008) Mechanistic studies in the synthesis of a series of thieno-expanded xanthosine and guanosine nucleosides. Tetrahedron 64:10791-10797
O'Daniel, Peter I; Jefferson, Malcolm; Wiest, Olaf et al. (2008) A computational study of expanded heterocyclic nucleosides in DNA. J Biomol Struct Dyn 26:283-92
Seley-Radtke, Katherine L; Zhang, Zhibo; Wauchope, Orrette R et al. (2008) Hetero-expanded purine nucleosides. Design, synthesis and preliminary biological activity. Nucleic Acids Symp Ser (Oxf) :635-6