This program has as its primary objective the design, synthesis and biological evaluation of inhibitors of S-adenosylmethionine (AdoMet)-dependent macromolecular methylations (e.g., nucleic acid and protein). This objective will be accomplished through the design and synthesis of inhibitors of eukaryotic and prokaryotic S-adenosylhomocysteine (AdoHcy) hydrolase. AdoHcy hydrolase is the enzyme that regulates the cellular level of AdoHcy, which is the endogenous inhibitor of AdoMet-dependent methylations. To more rationally design inhibitors of AdoHcy hydrolase, we will study the structure of both the prokaryotic and eukaryotic enzymes, their mechanisms of catalysis, their mechanisms of interaction with inhibitors and the physiological mechanisms by which the activity of these enzymes are regulated in vivo. The biochemical mechanisms by which neplanocin A, a potent inhibitor of AdoHcy hydrolase, produces its antiviral and antibacterial effects will be elucidated. Analogs of neplanocin A will be synthesized and evaluated as inhibitors of eukaryotic (bovine liver) and prokaryotic (A. faecalis) AdoHcy hydrolase and as substrates for eukaryotic (murine L929 cells) and prokaryotic (A. faecalis, B. subtilis) adenosine kinase. The neplanocin analogs will be evaluated for their effects on AdoMet/AdoHcy metabolism in eukaryotes (murine L929, human colon carcinoma cell line HT-29, neuroblastoma N2a cells) and prokaryotes (A. faecalis, B. subtilis) and for their antiviral (vaccinia virus), antitumor (human colon carcinoma cell line HT-29) and antibacterial (A. faecalis, B. subtilis) effects. AdoHcy hydrolase inhibitors (e.g., neplanocin A) will be used to determine the chemical nature of protein carboxylmethylation (e.g., D-aspartyl residues, Beta-linked aspartyl residues) in neuroblastoma cells and to determine the physiological function of this type of post-translational modification in neuronal tissue.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM029332-14
Application #
3276877
Study Section
Bio-Organic and Natural Products Chemistry Study Section (BNP)
Project Start
1980-12-01
Project End
1990-11-30
Budget Start
1986-12-01
Budget End
1987-11-30
Support Year
14
Fiscal Year
1987
Total Cost
Indirect Cost
Name
University of Kansas Lawrence
Department
Type
Schools of Arts and Sciences
DUNS #
072933393
City
Lawrence
State
KS
Country
United States
Zip Code
66045
Cai, Sumin; Fang, Jianwen; Li, Qing-Shan et al. (2010) Comparative kinetics of cofactor association and dissociation for the human and trypanosomal S-adenosylhomocysteine hydrolases. 3. Role of lysyl and tyrosyl residues of the C-terminal extension. Biochemistry 49:8434-41
Li, Qing-Shan; Cai, Sumin; Fang, Jianwen et al. (2009) Evaluation of NAD(H) analogues as selective inhibitors for Trypanosoma cruzi S-adenosylhomocysteine hydrolase. Nucleosides Nucleotides Nucleic Acids 28:473-84
Cai, Sumin; Li, Qing-Shan; Fang, Jianwen et al. (2009) The rationale for targeting the NAD/NADH cofactor binding site of parasitic S-adenosyl-L-homocysteine hydrolase for the design of anti-parasitic drugs. Nucleosides Nucleotides Nucleic Acids 28:485-503
Li, Qing-Shan; Cai, Sumin; Fang, Jianwen et al. (2008) Comparative kinetics of cofactor association and dissociation for the human and trypanosomal S-adenosylhomocysteine hydrolases. 2. The role of helix 18 stability. Biochemistry 47:4983-91
Wnuk, Stanislaw F; Sacasa, Pablo R; Lewandowska, Elzbieta et al. (2008) Synthesis of 5'-functionalized nucleosides: S-Adenosylhomocysteine analogues with the carbon-5'and sulfur atoms replaced by a vinyl or halovinyl unit. Bioorg Med Chem 16:5424-33
Hu, Chen; Fang, Jianwen; Borchardt, Ronald T et al. (2008) Molecular dynamics simulations of domain motions of substrate-free S-adenosyl- L-homocysteine hydrolase in solution. Proteins 71:131-43
Cai, Sumin; Li, Qing-Shan; Borchardt, Ronald T et al. (2007) The antiviral drug ribavirin is a selective inhibitor of S-adenosyl-L-homocysteine hydrolase from Trypanosoma cruzi. Bioorg Med Chem 15:7281-7
Li, Qing-Shan; Cai, Sumin; Borchardt, Ronald T et al. (2007) Comparative kinetics of cofactor association and dissociation for the human and trypanosomal S-adenosylhomocysteine hydrolases. 1. Basic features of the association and dissociation processes. Biochemistry 46:5798-809
Nowak, Ireneusz; Robins, Morris J (2007) Synthesis of 3'-deoxynucleosides with 2-oxabicyclo[3.1.0]hexane sugar moieties: addition of difluorocarbene to a 3',4'-unsaturated uridine derivative and 1,2-dihydrofurans derived from D- and L-xylose1. J Org Chem 72:3319-25
Nowak, Ireneusz; Robins, Morris J (2007) Trifluoromethylation of alkenyl bromides and iodides (including 5-iodouracils) with (CF3)2Hg and Cu (""trifluoromethylcopper""). J Org Chem 72:2678-81

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