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1.
J Enzyme Inhib Med Chem ; 37(1): 597-605, 2022 Dec.
Article in English | MEDLINE | ID: mdl-35067138

ABSTRACT

The influence of base type, temperature, and solvent on regioselective C(9)/C(10) "click" modifications within the tropolone ring of colchiceine (2) is investigated. New ether derivatives of 2, bearing alkyne, azide, vinyl, or halide aryl groups enable assembly of the alkaloid part with heterocycles or important biomolecules such as saccharides, geldanamycin or AZT into hybrid scaffolds by dipolar cycloaddition (CuAAC) or Heck reaction. Compared to colchicine (1) or colchiceine (2), ether congeners, as e.g. 3e [IC50s(3e) ∼ 0.9 nM], show improved or similar anticancer effects, whereby the bulkiness of the substituents and the substitution pattern of the tropolone proved to be essential. Biological studies reveal that expanding the ether arms by terminal basic heterocycles as quinoline or pyridine, decreases the toxicity in HDF cells at high anticancer potency (IC50s ∼ 1-2 nM). Docking of ether and hybrid derivatives into the colchicine pocket of αGTP/ß tubulin dimers reveals a relationship between the favourable binding mode and the attractive anticancer potency.


Subject(s)
Antineoplastic Agents/pharmacology , Colchicine/pharmacology , Heterocyclic Compounds/pharmacology , Tropolone/pharmacology , Tubulin Modulators/pharmacology , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Colchicine/chemical synthesis , Colchicine/chemistry , Dose-Response Relationship, Drug , Drug Screening Assays, Antitumor , Heterocyclic Compounds/chemical synthesis , Heterocyclic Compounds/chemistry , Humans , Molecular Docking Simulation , Molecular Structure , Stereoisomerism , Structure-Activity Relationship , Tropolone/chemical synthesis , Tropolone/chemistry , Tubulin/metabolism , Tubulin Modulators/chemical synthesis , Tubulin Modulators/chemistry
2.
Chem Pharm Bull (Tokyo) ; 69(6): 564-572, 2021.
Article in English | MEDLINE | ID: mdl-34078803

ABSTRACT

Novel derivatives of puberulic acid were synthesized and their antimalarial properties were evaluated in vitro against the Plasmodium falciparum K1 parasite strain, cytotoxicity against a human diploid embryonic cell line MRC-5, and in vivo efficacy using a Plasmodium berghei-infected mouse model. From previous information that three hydroxy groups on the tropone framework were essential for antimalarial activity, we converted the carboxylic acid moiety into the corresponding esters, amides, and ketones. These derivatives showed antimalarial activity against chloroquine-resistant Plasmodium in vitro equivalent to puberulic acid. We identified that the pentane-3-yl ester, cyclohexyl ester, iso-butyl ketone, cyclohexyl methyl ketone all show an especially potent antiparasitic effect in vivo at an oral dose of 15 mg/kg without any apparent toxicity. These esters were more effective than the existing commonly used antimalarial drug, artesunate.


Subject(s)
Antimalarials/pharmacology , Carboxylic Acids/pharmacology , Malaria/drug therapy , Plasmodium/drug effects , Tropolone/analogs & derivatives , Animals , Antimalarials/chemical synthesis , Antimalarials/chemistry , Carboxylic Acids/chemical synthesis , Carboxylic Acids/chemistry , Cell Line , Cell Survival/drug effects , Disease Models, Animal , Humans , Malaria/parasitology , Male , Mice , Mice, Inbred ICR , Molecular Structure , Parasitic Sensitivity Tests , Tropolone/chemical synthesis , Tropolone/chemistry , Tropolone/pharmacology
3.
J Am Chem Soc ; 143(15): 6006-6017, 2021 04 21.
Article in English | MEDLINE | ID: mdl-33825475

ABSTRACT

The sesquiterpene-tropolones belong to a distinctive structural class of meroterpene natural products with impressive biological activities, including anticancer, antifungal, antimalarial, and antibacterial. In this article, we describe a concise, modular, and cycloaddition-based approach to a series of sesquiterpene mono- and bistropolones, including (-)-epolone B, (+)-isoepolone B, (±)-dehydroxypycnidione, and (-)-10-epi-pycnidione. Alongside the development of a general strategy to access this unique family of metabolites were computational modeling studies that justified the diastereoselectivity observed during key cycloadditions. Ultimately, these studies prompted stereochemical reassignments of the pycnidione subclass and shed additional light on the biosynthesis of these remarkable natural products.


Subject(s)
Sesquiterpenes/chemistry , Tropolone/chemistry , Biological Products/chemical synthesis , Biological Products/chemistry , Cycloaddition Reaction , Density Functional Theory , Heterocyclic Compounds, 4 or More Rings/chemical synthesis , Heterocyclic Compounds, 4 or More Rings/chemistry , Molecular Conformation , Monocyclic Sesquiterpenes/chemical synthesis , Monocyclic Sesquiterpenes/chemistry , Sesquiterpenes/chemical synthesis , Stereoisomerism , Tropolone/analogs & derivatives , Tropolone/chemical synthesis
4.
Molecules ; 27(1)2021 Dec 29.
Article in English | MEDLINE | ID: mdl-35011415

ABSTRACT

Synthesis, single-crystal X-ray determination diffraction and FT-IR, NMR (1H, 13C, 19F and 205Tl), UV-vis, and luminescence spectra characteristics were described for series of thallium(I) compounds: thallium(I) triflate (Tl(OTf)), 1:1 co-crystals of thallium(I) triflate and tropolone (Htrop), Tl(OTf)·Htrop, as well as simple thallium(I) chelates: Tl(trop) (1), Tl(5-metrop) (2), Tl(hino) (3), with Htrop, 5-methyltropolone (5-meHtrop), 4-isopropyltropolone (hinokitiol, Hhino), respectively, and additionally more complex {Tl@[Tl(hino)]6}(OTf) (4) compound. Comparison of their antimicrobial activity with selected lead(II) and bismuth(III) analogs and free ligands showed that only bismuth(III) complexes demonstrated significant antimicrobial activity, from two- to fivefold larger than the free ligands.


Subject(s)
Anti-Infective Agents/chemistry , Anti-Infective Agents/pharmacology , Thallium/chemistry , Tropolone/chemistry , Tropolone/pharmacology , Anti-Infective Agents/chemical synthesis , Bismuth/chemistry , Chemistry Techniques, Synthetic , Lead/chemistry , Magnetic Resonance Spectroscopy , Models, Molecular , Molecular Conformation , Molecular Structure , Spectrum Analysis , Structure-Activity Relationship , Tropolone/analogs & derivatives , Tropolone/chemical synthesis
5.
Antiviral Res ; 177: 104777, 2020 05.
Article in English | MEDLINE | ID: mdl-32217151

ABSTRACT

The Hepatitis B Virus (HBV) ribonuclease H (RNaseH) is a promising but unexploited drug target. Here, we synthesized and analyzed a library of 57 amide-containing α-hydroxytropolones (αHTs) as potential leads for HBV drug development. Fifty percent effective concentrations ranged from 0.31 to 54 µM, with selectivity indexes in cell culture of up to 80. Activity against the HBV RNaseH was confirmed in semi-quantitative enzymatic assays with recombinant HBV RNaseH. The compounds were overall poorly active against human ribonuclease H1, with 50% inhibitory concentrations of 5.1 to >1,000 µM. The αHTs had modest activity against growth of the fungal pathogen Cryptococcus neoformans, but had very limited activity against growth of the Gram - bacterium Escherichia coli and the Gram + bacterium Staphylococcus aureus, indicating substantial selectivity for HBV. A molecular model of the HBV RNaseH templated against the Ty3 RNaseH was generated. Docking the compounds to the RNaseH revealed the anticipated binding pose with the divalent cation coordinating motif on the compounds chelating the two Mn++ ions modeled into the active site. These studies reveal that that amide αHTs can be strong, specific HBV inhibitors that merit further assessment toward becoming anti-HBV drugs.


Subject(s)
Amides/pharmacology , Antiviral Agents/pharmacology , Hepatitis B virus/drug effects , Tropolone/pharmacology , Virus Replication/drug effects , Amides/chemistry , Antiviral Agents/chemistry , Cell Line , Drug Discovery , Hepatitis B/drug therapy , Hepatitis B virus/physiology , Humans , Models, Molecular , Tropolone/chemical synthesis , Tropolone/chemistry
6.
Metallomics ; 11(11): 1952-1964, 2019 11 01.
Article in English | MEDLINE | ID: mdl-31647486

ABSTRACT

Agents inducing apoptosis and autophagic death could be effective chemotherapeutic drugs. In this work, four novel Cu(ii) complexes formulated as [CuL2] (1), [Cu(phen)LCl]·0.5H2O (2), [Cu2(MQ)2L2] (3) and [Cu(2,2'-bpy)LCl]·H2O (4) (phen = 1,10-Phenanthroline, HMQ = 8-hydroxy-2-methylquinoline, 2,2'-bpy = 2,2'-bipyridine) were prepared from the reactions of copper(ii) chloride with tropolone (HL) in the absence or presence of different ancillary ligands. The solution state structures of 1, 2 and 4 agree well with their solid state structures. Complex 3 presents a dimer structure in the solid state, however, a monomer structure in the solution state. It was shown that all of these complexes are stable under experimental conditions and bind to DNA in an intercalative mode with the binding constant Kb values of 1.05 × 103, 2.57 × 103, 2.53 × 103 and 2.26 × 103 L mol-1 for complexes 1, 2, 3 and 4, respectively. The anti-proliferative tests against cultured human cancer cell lines (A549, Bel-7402, MGC80-3, T24, SK-OV-3, and NCI-H460) in vitro revealed cytotoxic activities for these complexes, which are much better than those for all ligands in these complexes, as well as that for cis-platin. After a careful comparison, the cytotoxic activity of complex 2 against MGC80-3 cells in vitro (IC50 = 3.5 ± 0.9 µM for 2 and 18.0 ± 1.2 for cis-platin) was further investigated in detail as an example. 2 induces the apoptosis of MGC80-3 through a caspase-dependent mitochondrion pathway and can also induce autophagy, which revealed a certain anticancer activity for complex 2.


Subject(s)
Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Copper/pharmacology , Tropolone/chemistry , Tropolone/pharmacology , Antineoplastic Agents/chemical synthesis , Apoptosis/drug effects , Autophagy/drug effects , Benzimidazoles/metabolism , Calcium/metabolism , Carbocyanines/metabolism , Caspases/metabolism , Cell Cycle/drug effects , Cell Line, Tumor , Fluorescence , Humans , Inhibitory Concentration 50 , Membrane Potential, Mitochondrial/drug effects , Reactive Oxygen Species/metabolism , Solubility , Tropolone/chemical synthesis
7.
J Org Chem ; 84(22): 14670-14678, 2019 11 15.
Article in English | MEDLINE | ID: mdl-31603325

ABSTRACT

Oxidopyrylium ylides are useful intermediates in synthetic organic chemistry because of their capability of forming structurally complex cycloadducts. They can also self-dimerize via [5 + 3] cycloaddition, which is an oft-reported side reaction that can negatively impact [5 + 2] cycloadduct yields and efficiency. In select instances, these dimers can be synthesized and used as the source of oxidopyrylium ylide, although the generality of this process remains unclear. Thus, how the substitution pattern governs both dimerization and cycloaddition reactions is of fundamental interest to probe factors to regulate them. The following manuscript details our findings that maltol-derived oxidopyrylium ylides (i.e., with ortho methyl substitution relative to oxide) can be trapped prior to dimerization more efficiently than the regioisomeric allomaltol-derived ylide (i.e., with a para methyl substitution relative to oxide). Density functional theory studies provide evidence in support of a sterically (kinetically) controlled mechanism, whereby gauche interactions between appendages of the approaching maltol-derived ylides are privileged by higher barriers for dimerization and thus are readily intercepted by dipolarophiles via [5 + 2] cycloadditions.


Subject(s)
Bridged Bicyclo Compounds/chemical synthesis , Pyrones/chemistry , Tropolone/chemical synthesis , Bridged Bicyclo Compounds/chemistry , Cycloaddition Reaction , Dimerization , Kinetics , Molecular Structure , Tropolone/chemistry
8.
J Vis Exp ; (150)2019 08 12.
Article in English | MEDLINE | ID: mdl-31449244

ABSTRACT

aza-Michael adducts of tricarbonyl(tropone)iron are synthesized by two different methods. Primary aliphatic amines and cyclic secondary amines participate in a direct aza-Michael reaction with tricarbonyl(tropone)iron under solvent-free conditions. Less nucleophilic aniline derivatives and more hindered secondary amines add efficiently to the cationic tropone complex formed by protonation of tricarbonyl(tropone)iron. While the protocol utilizing the cationic complex is less efficient overall for accessing the aza-Michael adducts than the direct, solvent-free addition to the neutral complex, it allows the use of a broader range of amine nucleophiles. Following protection of the amine of the aza-Michael adduct as a tert-butyl carbamate, the diene is decomplexed from the iron tricarbonyl fragment upon treatment with cerium(IV) ammonium nitrate to provide derivatives of 6-aminocyclohepta-2,4-dien-1-one. These products can serve as precursors to diverse compounds containing a seven-membered carbocyclic ring. Because the demetallation requires protection of the amine as a carbamate, the aza-Michael adducts of secondary amines cannot be decomplexed using the protocol described here.


Subject(s)
Chemistry, Pharmaceutical/methods , Iron/chemistry , Tropolone/analogs & derivatives , Amines/chemical synthesis , Catalysis , Hydrogenation , Nitrates/chemical synthesis , Solvents/chemical synthesis , Tropolone/chemical synthesis
9.
Org Lett ; 21(7): 2412-2415, 2019 04 05.
Article in English | MEDLINE | ID: mdl-30869521

ABSTRACT

Configurationally stable, atropisomeric motifs are an important structural element in a number of molecules, including chiral ligands, catalysts, and molecular devices. Thus, understanding features that stabilize chiral axes is of fundamental interest throughout the chemical sciences. The following details the high rotational barriers about the Ar-C(O) bond of tropone amides, which significantly exceed those of analogous benzamides. These studies are supported by both experimental and computational rotational barrier measurements. We also report the resolution of an axially chiral α-hydroxytropolone amide into its individual atropisomers, and demonstrate its configurational stability at physiological pH and temperatures over 24 h.


Subject(s)
Amides/chemical synthesis , Tropolone/analogs & derivatives , Amides/chemistry , Models, Molecular , Molecular Structure , Stereoisomerism , Tropolone/chemical synthesis , Tropolone/chemistry
10.
Chembiochem ; 20(11): 1467-1475, 2019 06 03.
Article in English | MEDLINE | ID: mdl-30677202

ABSTRACT

Tropolone (2-hydroxycyclohepta-2,4,6-triene-1-one and tautomer) is a non-benzenoid bioactive natural chromophore with pH-dependent fluorescence character and extraordinary metal binding affinities, especially with transition-metal ions Cu2+ /Zn2+ /Ni2+ . This report describes the syntheses and biophysical studies of a new tropolonyl thymidine [(4(5)-hydroxy-5(4)-oxo-5(4)H-cyclohepta-1,3,6-trienyl)thymidine] (tr-T) nucleoside and of corresponding tropolone-conjugated DNA oligonucleotides that form B-form DNA duplex structures with a complementary DNA strand, although their duplex structures are less stable than that of the control. Furthermore, the stabilities of those DNA duplex structures are lowered by the presence of increasing numbers of tr-T residue or by decreasing pH of their environments. Most importantly, these duplex structures are made fluorescent because of the presence of the tropolone moieties conjugated to the thymidine residues. The fluorescence behavior of those duplex structures exhibits pH dependence, with stronger fluorescence at lower pH and weaker fluorescence at high pH. Importantly, the fluorescence characters of tr-DNA oligonucleotides are significantly enhanced by nearly threefold after duplex structure formation with their complementary control DNA oligonucleotide. Further, the fluorescence behavior of these tr-DNA duplex structures is also dependent on the pH conditions. Hence, tropolonyl-conjugated DNA represents a class of new fluorescent analogues that might be be employed for sensing DNA duplex formation and provide opportunities to improve fluorescence properties further.


Subject(s)
DNA/chemistry , Nucleosides/chemistry , Oligonucleotides/chemistry , Tropolone , Fluorescence , Models, Molecular , Tropolone/chemical synthesis , Tropolone/chemistry
11.
Chem Biol Drug Des ; 93(4): 582-589, 2019 04.
Article in English | MEDLINE | ID: mdl-30560566

ABSTRACT

Human immunodeficiency virus (HIV) reverse transcriptase (RT)-associated ribonuclease H (RNase H) remains as the only enzyme encoded within the viral genome not targeted by current antiviral drugs. In this work, we report the design, synthesis, and biologic evaluation of a novel series of galloyl derivatives with HIV-1 RNase H inhibitory activity. Most of them showed IC50 s at sub- to low-micromolar concentrations in enzymatic assays. The most potent compound was II-25 that showed an IC50 of 0.72 ± 0.07 µM in RNase H inhibition assays carried out with the HIV-1BH10 RT. II-25 was 2.8 times more potent than ß-thujaplicinol in these assays. Interestingly, II-25 and other galloyl derivatives were also found to inhibit the HIV IN strand transfer activity in vitro. Structure-activity relationships (SAR) studies and molecular modeling analysis predict key interactions with RT residues His539 and Arg557, while providing helpful insight for further optimization of selected compounds.


Subject(s)
Anti-HIV Agents/chemical synthesis , Drug Design , HIV-1/enzymology , Ribonuclease H, Human Immunodeficiency Virus/antagonists & inhibitors , Tropolone/analogs & derivatives , Anti-HIV Agents/chemistry , Anti-HIV Agents/pharmacology , Benzoic Acid/chemistry , Binding Sites , Catalytic Domain , HIV-1/drug effects , Humans , Inhibitory Concentration 50 , Molecular Docking Simulation , Ribonuclease H, Human Immunodeficiency Virus/metabolism , Structure-Activity Relationship , Tropolone/chemical synthesis , Tropolone/chemistry , Tropolone/pharmacology
12.
J Org Chem ; 83(3): 1478-1485, 2018 02 02.
Article in English | MEDLINE | ID: mdl-29338231

ABSTRACT

α-Hydroxytropolones (αHTs) are troponoids that demonstrate inhibition against an array of therapeutically significant targets, making them potential drug leads for several human diseases. We have utilized a recently discovered one-pot three-component oxidopyrylium cycloaddition in a solid-supported synthesis of αHTs. Though the procedure is time efficient and generates assay-ready molecules, the system suffers from low yields and an inability to perform reaction modifications on resin-bound intermediates. In order to combat these issues with the solid-phase platform, we incorporated fluorous tags into our synthetic route. Through the implementation of fluorous phase chemistry, we demonstrate a substantial increase in the overall yield of αHTs, as well as an ability to execute metal-catalyzed cross coupling and amide coupling on fluorous tagged intermediates. We also show that tagged molecules can be separated from nonfluorous impurities, and vice versa, by utilizing fluorous liquid-liquid and solid-phase extractions. Hence, these proof-of-principle investigations describe the viability of a fluorous phase approach to αHT synthesis and its potential to serve as a combinatorial technique to produce structurally diverse substrates.


Subject(s)
Fluorides/chemistry , Tropolone/chemical synthesis , Molecular Structure , Tropolone/analogs & derivatives , Tropolone/chemistry
13.
Bioorg Med Chem ; 26(2): 536-542, 2018 01 15.
Article in English | MEDLINE | ID: mdl-29274704

ABSTRACT

Xanthine oxidase (XO) is an enzyme that contains molybdenum at the active site and catalyzes the oxidation of purine bases to uric acid. Even though XO inhibitors are widely used for the treatment of hyperuricemia and gout, only very few such compounds are clinically used as drugs for the treatment of these diseases. Given the unique physicochemical properties of tropolone, i.e., its chelating effect and the pKa value that is similar to that of carboxylic acid, we have synthesized 22 5-arylazotropolone derivatives as potential XO inhibitors. In vitro enzyme-inhibitory assays for XO revealed that 3-nitro derivative 1j showed the most potent XO inhibitory activity, which is by one order of magnitude more potent than allopurinol. An enzyme-kinetic study revealed that 1j inhibited the production of uric acid by XO both competitively and non-competitively. A docking-simulation study of 1j with XO suggested that the carbonyl and hydroxyl groups of the tropolone ring interact with the hydroxy group that acts as a ligand for molybdenum and the amino acid residues around the active site of XO.


Subject(s)
Enzyme Inhibitors/pharmacology , Tropolone/pharmacology , Xanthine Oxidase/antagonists & inhibitors , Animals , Cattle , Dose-Response Relationship, Drug , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Milk/enzymology , Molecular Structure , Structure-Activity Relationship , Tropolone/chemical synthesis , Tropolone/chemistry , Xanthine Oxidase/metabolism
14.
Org Biomol Chem ; 16(1): 62-69, 2017 Dec 19.
Article in English | MEDLINE | ID: mdl-29098212

ABSTRACT

3,7-Dihydroxytropolones (3,7-dHTs) are highly oxygenated troponoids that have been identified as lead compounds for several human diseases. To date, structure-function studies on these molecules have been limited due to a scarcity of synthetic methods for their preparation. New synthetic strategies towards structurally novel 3,7-dHTs would be valuable in further studying their therapeutic potential. Here we describe the successful adaptation of a [5 + 2] oxidopyrilium cycloaddition/ring-opening for 3,7-dHT synthesis, which we apply in the synthesis of a plausible biosynthetic intermediate to the natural products puberulic and puberulonic acid. We have also tested these new compounds in several biological assays related to human immunodeficiency virus (HIV), hepatitis B virus (HBV) and herpes simplex virus (HSV) in order to gain insight into structure-functional analysis related to antiviral troponoid development.


Subject(s)
Antiviral Agents/pharmacology , HIV/drug effects , Hepatitis B virus/drug effects , Simplexvirus/drug effects , Tropolone/analogs & derivatives , Antiviral Agents/chemical synthesis , Antiviral Agents/chemistry , Dose-Response Relationship, Drug , Microbial Sensitivity Tests , Molecular Structure , Structure-Activity Relationship , Tropolone/chemical synthesis , Tropolone/chemistry , Tropolone/pharmacology
15.
Sci Rep ; 7(1): 7259, 2017 08 03.
Article in English | MEDLINE | ID: mdl-28775291

ABSTRACT

Divergent synthesis of antimalarial troponoids, including naturally occurring compounds, some of which were identified and isolated by our group, has been achieved utilizing the total synthetic route of puberulic acid. Structure-activity relationships of natural products and simple troponoids inspired us to explore more detailed properties of this class of compounds. Access to new derivatives was facilitated through intermediate compounds generated during the total synthesis of puberulic acid by a stepwise oxidation-aromatization sequence to provide 7-hydroxytropolones and bromination for conversion of the carboxylic acid moiety. The first total synthesis of viticolin A, as well as the synthesis of different methyl-substituted derivatives, has also been achieved. In vitro antimalarial activity and cytotoxicity of novel derivatives were evaluated and fundamental information to facilitate the discovery of more promising antimalarials was obtained.


Subject(s)
Antimalarials/chemistry , Antimalarials/pharmacology , Biological Products/chemistry , Biological Products/pharmacology , Carboxylic Acids/chemistry , Carboxylic Acids/pharmacology , Tropolone/analogs & derivatives , Antimalarials/chemical synthesis , Biological Products/chemical synthesis , Carboxylic Acids/chemical synthesis , Cell Line , Cell Survival/drug effects , Chemistry Techniques, Synthetic , Humans , Inhibitory Concentration 50 , Molecular Structure , Oxidation-Reduction , Parasitic Sensitivity Tests , Plasmodium falciparum/drug effects , Structure-Activity Relationship , Tropolone/chemical synthesis , Tropolone/chemistry , Tropolone/pharmacology
16.
Org Lett ; 17(23): 5926-9, 2015 Dec 04.
Article in English | MEDLINE | ID: mdl-26596136

ABSTRACT

A new and convenient strategy for the synthesis of functionalized tropone derivatives based on the gold-catalyzed oxidative ring expansion of alkynyl quinols has been developed. The reaction proceeds via gold-catalyzed highly regioselective oxidation followed by 1,2-migration of a vinyl or phenyl group. Extension of this chemistry allows ready access to various seven- or six-membered ring systems such as benzotropones, benzooxepines, phenanthrenes, and quinolin-2(1H)-ones.


Subject(s)
Alkynes/chemistry , Gold/chemistry , Tropolone/analogs & derivatives , Benzoxepins/chemical synthesis , Benzoxepins/chemistry , Catalysis , Molecular Structure , Oxidation-Reduction , Phenanthrenes/chemical synthesis , Phenanthrenes/chemistry , Quinolones/chemical synthesis , Quinolones/chemistry , Tropolone/chemical synthesis , Tropolone/chemistry
17.
Org Lett ; 17(8): 2030-3, 2015 Apr 17.
Article in English | MEDLINE | ID: mdl-25839211

ABSTRACT

A simple and general method for the synthesis of highly substituted α-tropolone ethers that allows rapid access to the bis(tropolone) core of the antiproliferative metabolites (-)-gukulenins A and F (3, 4) is described. The reaction proceeds by thermolytic opening of gem-dibromobicyclo[4.1.0]heptane intermediates, which are readily accessed from simple starting materials. Mechanistic studies suggest the reaction proceeds via an autocatalytic process mediated by methyl hypobromite. This synthetic sequence allows access to a broad array of highly substituted α-tropolones.


Subject(s)
Heterocyclic Compounds, 4 or More Rings/chemical synthesis , Terpenes/chemical synthesis , Tropolone/chemistry , Tropolone/chemical synthesis , Ethers/chemical synthesis , Ethers/chemistry , Heterocyclic Compounds, 4 or More Rings/chemistry , Molecular Structure , Stereoisomerism , Terpenes/chemistry
18.
J Am Chem Soc ; 136(51): 17844-51, 2014 Dec 24.
Article in English | MEDLINE | ID: mdl-25416006

ABSTRACT

A Ni/N-heterocyclic carbene catalyst couples diynes to the C(α)-C(ß) double bond of tropone, a type of reaction that is unprecedented for metal-catalyzed cycloadditions with aromatic tropone. Many different diynes were efficiently coupled to afford [5-6-7] fused tricyclic products, while [5-7-6] fused tricyclic compounds were obtained as minor byproducts in a few cases. The reaction has broad substrate scope and tolerates a wide range of functional groups, and excellent regioselectivity is found with unsymmetrical diynes. Theoretical calculations show that the apparent enone cycloaddition occurs through a distinctive 8π insertion of tropone. The initial intramolecular oxidative cyclization of diyne produces the nickelacyclopentadiene intermediate. This intermediate undergoes an 8π insertion of tropone, and subsequent reductive elimination generates the [5-6-7] fused tricyclic product. This initial product undergoes two competing isomerizations, leading to the observed [5-6-7] and [5-7-6] fused tricyclic products.


Subject(s)
Diynes/chemistry , Diynes/chemical synthesis , Heterocyclic Compounds/chemistry , Methane/analogs & derivatives , Tropolone/analogs & derivatives , Catalysis , Cyclization , Cycloaddition Reaction , Methane/chemistry , Models, Molecular , Molecular Conformation , Stereoisomerism , Substrate Specificity , Tropolone/chemical synthesis , Tropolone/chemistry
19.
Chem Commun (Camb) ; 50(63): 8715-8, 2014 Aug 14.
Article in English | MEDLINE | ID: mdl-24964220

ABSTRACT

Efficient and practical total synthesis of puberulic acid has been accomplished via 8 steps, with 54% overall yield, and only two C-C bond formations, without the introduction of oxygen atoms into the core skeleton. Construction of the tropolone framework as the key transformation was achieved by multi-tandem oxidation of the aliphatic-triol, from D-(+)-galactose as the starting material.


Subject(s)
Antimalarials/chemical synthesis , Carboxylic Acids/chemical synthesis , Tropolone/analogs & derivatives , Animals , Indicators and Reagents , Oxidation-Reduction , Oxygen/chemistry , Penicillium/chemistry , Tropolone/chemical synthesis , Tropolone/chemistry
20.
Bioorg Med Chem ; 22(13): 3537-43, 2014 Jul 01.
Article in English | MEDLINE | ID: mdl-24856184

ABSTRACT

The oxidation of some cyanocycloheptatrienes with CrO3 and pyridine was investigated and a few new nitrile functionalised benzotropone derivatives were obtained. Photooxygenation reaction of these products was also studied. The structures of the formed products were determined on the basis of NMR spectroscopy and the formation mechanism of unusual products was discussed. Human carbonic anhydrase isoenzymes I, and II (hCA I and hCA II) inhibition properties of nitrile functionalized new benzotropone derivatives were also studied. Both CA isozymes were inhibited in the low micromolar range by these nitrile functionalized benzotropone analogues. The newly synthesized benzotropone derivatives showed inhibition constants in the sub-micromolar range (2.51-4.06µM). The best hCA I inhibition was observed in 5H-benzocycloheptene-7-carbonitrile (Ki: 2.88±0.86µM). On the other hand, 5-oxo-5H-benzocycloheptatriene-7-carbonitrile showed the powerful inhibitory effect against hCA II (Ki: 2.51±0.34µM).


Subject(s)
Carbonic Anhydrase II/antagonists & inhibitors , Carbonic Anhydrase I/antagonists & inhibitors , Carbonic Anhydrase Inhibitors/pharmacology , Tropolone/analogs & derivatives , Carbonic Anhydrase I/metabolism , Carbonic Anhydrase II/metabolism , Carbonic Anhydrase Inhibitors/chemical synthesis , Carbonic Anhydrase Inhibitors/chemistry , Dose-Response Relationship, Drug , Humans , Isoenzymes/antagonists & inhibitors , Isoenzymes/metabolism , Models, Molecular , Molecular Structure , Oxidation-Reduction , Photochemical Processes , Structure-Activity Relationship , Tropolone/chemical synthesis , Tropolone/chemistry , Tropolone/pharmacology
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