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Biomedical subjects

R J Quinn

Publications and source records attributed to R J Quinn.

At least 19 recordsLinked to original sources

High-pressure synthesis of enantiomerically pure C-6 substituted pyrazol.

The synthesis of enantiomerically pure C-6 substituted pyrazolo[3,4-d]pyrimidines has been performed by aromatic nucleophilic substitution of 4-amino-6-chloro-1-phenylpyrazolo[3,4-rd]pyrimidine under conditions of high pressure at ambient temperature. Conventional synthetic conditions (reflux at atmospheric pressure) were unsuccessful. The S enantiomer 11 displayed higher affinity and selectivity for the adenosine A1 receptor than the R enantiomer 12.

Animals↗

A study of the binding requirements of calyculin A and dephosphonocalyculin A with PP1, development of a molecular recognition model for the binding interactions of the okadaic acid class of compounds with PP1.

The interactions of the okadaic acid class of compounds, with special emphasis on the solution structures of calyculin A and dephosphonocalyculin A with PP1 are reported. After examination of the interactions of all docked structures, a receptor based pharmacophore model for the interactions of the protein phosphatase inhibitors has been developed. Calyculin A or dephosphonocalyculin A can interact with the enzyme in either a manner similar to the reported crystal structure, or in an extended form. The inhibitors require two essential regions interacting with the hydrophobic region and the central metal binding regions of the enzyme. This simplified model is consistent with previously published models of the okadaic acid class of compounds with PP1.

Crystallography, X-Ray↗

Cheilanthane sesterterpenes, protein kinase inhibitors, from a marine sponge of the genus Ircinia.

Four cheilanthane sesterterpenoids, 25-hydroxy-13(24),15,17-cheilanthatrien-19,25-olide (1), 13,16-epoxy-25-hydroxy-17-cheilanthen-19,25-olide (2), 25-hydroxy-13(24),17-cheilanthadien-16,19-olide (3), and 16,25-dihydroxy-13(24),17-cheilanthadien-19,25-olide (4), were isolated from the marine sponge Irciniasp. Compounds 1, 3, and 4 are new natural products. The four compounds inhibit MSK1 (mitogen and stress activated kinase) and MAPKAPK-2 (mitogen activated protein kinase activated protein kinase), two protein kinases involved in mitogen and stress signal transduction.

Animals↗

A benzylisoquinoline alkaloid from Doryphora sassafras.

Chemical investigation of the Australian rainforest plant Doryphora sassafras has resulted in the isolation of a new natural product, 2-methyl-1-(p-methoxybenzyl)-6,7-methylenedioxyisoquinolinium chloride (1). The iodide salt of compound 1 has previously been synthesized but only partially characterized. This paper reports the full spectroscopic characterization of 1 by MS, IR, UV, and NMR data.

Alkaloids↗

Anhydride modified cantharidin analogues. Is ring opening important in the inhibition of protein phosphatase 2A?

A series of anhydride modified cantharidin analogues have been synthesised and screened for their ability to inhibit protein phosphatase 2A. Surprisingly only analogues capable of undergoing a facile ring opening of the anhydride moiety displayed any significant inhibition. Subsequent NMR experiments indicated that 7-oxobicyclo[2.2.1]heptane-2,3-dicarboxylic acid was the major (sole) species under assay conditions. The ability of these modified anhydro-cantharidin analogues to inhibit protein phosphatase 2A varies from 4 (16) to 100% (8) at 100 microM test concentration.

Anhydrides↗

1-Phenylpyrazolo[3,4-d]pyrimidines; structure-ac:tivity relationships for C6 substituents at A1 and A2A adenosine receptors.

Substitution of I-phenylpyrazolo[3,4-d]pyrimidines at C6 with N-alkyl-2-thiopropionamide groups has resulted in a series of 18 compounds which have been evaluated for binding at A1 and A2A adenosine receptors. Introduction of an N-ethyl group gave increased affinity at both A1 and A2A receptors for the amino compound 7b compared to the primary amide 7a. An additional hydrophobic pocket exists for substituents on the amide. This pocket allows an N-ethyl group for increased affinity at both A1 and A2A receptors, allows larger alkyl groups at A2A receptors but not at A1 receptors and there is an H-bond interaction requiring one H-bond donor. Molecular modeling studies have also enabled a proposal of the amino acid residues involved in ligand binding at both the A1 and A2A receptors.

Animals↗

Anthoptilides A-E, new Briarane diterpenes from the Australian sea pen Anthoptilum cf. kukenthali.

The Australian sea pen Anthoptilum cf. kukenthali has afforded five new briarane-type diterpenes, anthoptilides A-E. Their structures were determined on the basis of their spectroscopic data. Single-crystal X-ray determination was performed on anthoptilide A. Anthoptilides B and C inhibited the binding of [(3)H]1, 3-dipropyl-8-cyclopentylxanthine ([(3)H]DPCPX) on adenosine A(1) receptors.

Animals↗

Polyoxygenated dysidea sterols that inhibit the binding of [I125] IL-8 to the human recombinant IL-8 receptor type A.

The combined CH(2)Cl(2) and MeOH crude extract of a new species of the marine sponge Dysidea, collected in Northern Australia was found to inhibit the binding of [I125] interleukin-8 [IL-8] to the human recombinant IL-8 receptor type A at 500 microg/mL. Bioassay-guided fractionation led to the isolation of three new polyoxygenated sterols 3, 4, and 5. Their structures were assigned on the basis of 1D and 2D NMR experiments, and relative stereochemistries were established by ROESY correlations and analysis of coupling constants. The IC(50) values for inhibition of IL-8Ra for sterols 3, 4, and 5 were 20, 5.5, and 4.5 microM, respectively.

Animals↗

10-Hydroxydarlingine, a new tropane alkaloid from the Australian proteaceous plant triunia erythrocarpa.

Triunia erythrocarpa was identified as containing alkaloids during chemical screening of Queensland Proteaceae using Dragendorff's reagent. A new tropane, 10-hydroxydarlingine (1), and the known tropane, darlingine (2), were isolated from the leaves of T. erythrocarpa. The absolute stereochemistry of 10-hydroxydarlingine (1) was assigned using the advanced Mosher method. T. erythrocarpa is only the seventh member of the Proteaceae to have been shown to produce alkaloids.

Alkaloids↗

The solution structures of calyculin A and dephosphonocalyculin A by NMR.

The NMR solution structure of calyculin A (1) in chloroform exhibits intramolecular interactions, resembling the original crystal structure. In methanol, calyculin A has the hydrogen bonding moieties solvent exposed. Dephosphonocalyculin A in chloroform resembles calyculin A in chloroform and the crystal structure of calyculin A. Dephosphonocalyculin A in methanol resembles calyculin A in methanol.

Animals↗

Sideroxylonal C, a new inhibitor of human plasminogen activator inhibitor type-1, from the flowers of Eucalyptus albens.

Sideroxylonal C (3), a new phloroglucinol dimer, was isolated from the flowers of Eucalyptus albens through bioassay-guided fractionation. The structure elucidation was based on 1D and 2D NMR experiments, MS analysis, and comparison with sideroxylonals A (1) and B (2). Sideroxylonal C inhibited human plasminogen activator inhibitor type-1 at 4.7 microM without any significant effect on human tissue plasminogen activator.

Benzofurans↗

Adenosine receptors: new opportunities for future drugs.

This review summarises current knowledge on adenosine receptors, an important G protein-coupled receptor. The four known adenosine receptor subtypes A1, A2A, A2B, and A3 are discussed with special reference to the opportunities for drug development.

Adenosine↗