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2.
J Med Chem ; 41(25): 5037-54, 1998 Dec 03.
Article in English | MEDLINE | ID: mdl-9836621

ABSTRACT

We previously reported the identification of (2S)-((2-benzoylphenyl)amino)-3-¿4-[2-(5-methyl-2-phenyloxazol-4-y l)e thoxy]phenyl¿propanoic acid (2) (PPARgamma pKi = 8.94, PPARgamma pEC50 = 9.47) as a potent and selective PPARgamma agonist. We now report the expanded structure-activity relationship around the phenyl alkyl ether moiety by pursuing both a classical medicinal chemistry approach and a solid-phase chemistry approach for analogue synthesis. The solution-phase strategy focused on evaluating the effects of oxazole and phenyl ring replacements of the 2-(5-methyl-2-phenyloxazol-4-yl)ethyl side chain of 2 with several replacements providing potent and selective PPARgamma agonists with improved aqueous solubility. Specifically, replacement of the phenyl ring of the phenyloxazole moiety with a 4-pyridyl group to give 2(S)-((2-benzoylphenyl)amino)-3-¿4-[2-(5-methyl-2-pyridin-4-yloxazol+ ++- 4-yl)ethoxy]phenyl¿propionic acid (16) (PPARgamma pKi = 8.85, PPARgamma pEC50 = 8.74) or a 4-methylpiperazine to give 2(S)-((2-benzoylphenyl)amino)-3-(4-¿2-[5-methyl-2-(4-methylpiperazin+ ++- 1-yl)thiazol-4-yl]ethoxy¿phenyl)propionic acid (24) (PPARgamma pKi = 8.66, PPARgamma pEC50 = 8.89) provided two potent and selective PPARgamma agonists with increased solubility in pH 7.4 phosphate buffer and simulated gastric fluid as compared to 2. The second strategy took advantage of the speed and ease of parallel solid-phase analogue synthesis to generate a more diverse set of phenyl alkyl ethers which led to the identification of a number of novel, high-affinity PPARgamma ligands (PPARgamma pKi's 6.98-8.03). The combined structure-activity data derived from the two strategies provide valuable insight on the requirements for PPARgamma binding, functional activity, selectivity, and aqueous solubility.


Subject(s)
DNA-Binding Proteins/agonists , Hypoglycemic Agents/chemical synthesis , Hypolipidemic Agents/chemical synthesis , Oxazoles/chemical synthesis , Propionates/chemical synthesis , Receptors, Cytoplasmic and Nuclear/agonists , Thiazoles/chemical synthesis , Transcription Factors/agonists , Tyrosine/analogs & derivatives , Tyrosine/chemical synthesis , Adipocytes/cytology , Adipocytes/drug effects , Animals , Cell Differentiation/drug effects , Cell Line , Humans , Hypoglycemic Agents/chemistry , Hypoglycemic Agents/pharmacology , Hypolipidemic Agents/chemistry , Hypolipidemic Agents/pharmacology , Ligands , Lipids/biosynthesis , Mice , Oxazoles/chemistry , Oxazoles/pharmacology , Propionates/chemistry , Propionates/pharmacology , Radioligand Assay , Receptors, Cytoplasmic and Nuclear/metabolism , Recombinant Fusion Proteins/agonists , Recombinant Fusion Proteins/metabolism , Solubility , Structure-Activity Relationship , Thiazoles/chemistry , Thiazoles/pharmacology , Transcription Factors/metabolism , Transfection , Tyrosine/chemistry , Tyrosine/pharmacology
5.
J Med Chem ; 38(19): 3850-6, 1995 Sep 15.
Article in English | MEDLINE | ID: mdl-7562916

ABSTRACT

A series of 1-[(2-hydroxyethoxy)methyl]-5-benzyluracils were synthesized and tested for inhibition of murine liver uridine phosphorylase (UrdPase). Inhibitors of UrdPase are reported to enhance the chemotherapeutic utility of 5-fluoro-2'-deoxyuridine and 5-fluorouracil and to ameliorate zidovudine-induced anemia in animal models. We prepared a series of 5-aryl-substituted analogues of 5-benzylacyclouridine (BAU), a good inhibitor of UrdPase (IC50 of 0.46 microM), to develop a compound with enhanced potency and improved pharmacokinetics. The first phase of structure-activity relationship studies on a series of 32 aryl-substituted 5-benzyluracils found several 5-(3-alkoxybenzyl) analogues of 5-benzyluracil with enhanced potency. The acyclovir side chain, the (2-hydroxyethoxy)methyl group, was substituted on the more potent aryl-substituted 5-benzyluracils. The two most potent compounds, 10y (3-propoxy) and 10dd (3-sec-butoxy), were inhibitors of UrdPase with IC50s of 0.047 and 0.027 microM, respectively. Six compounds were tested in vivo for effects on steady-state concentrations of circulating uridine in rats. Plasma uridine levels were elevated 3-9-fold by compound levels that ranged from 8 to 50 microM.


Subject(s)
Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , Uracil/analogs & derivatives , Uridine Phosphorylase/antagonists & inhibitors , Animals , Enzyme Inhibitors/chemistry , Enzyme Inhibitors/pharmacokinetics , Liver/enzymology , Male , Mice , Rats , Structure-Activity Relationship , Uracil/chemical synthesis , Uracil/pharmacokinetics , Uracil/pharmacology , Uridine/blood
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