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1.
Bioorg Chem ; 147: 107365, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38636436

ABSTRACT

Protein prenylation is one example of a broad class of post-translational modifications where proteins are covalently linked to various hydrophobic moieties. To globally identify and monitor levels of all prenylated proteins in a cell simultaneously, our laboratory and others have developed chemical proteomic approaches that rely on the metabolic incorporation of isoprenoid analogues bearing bio-orthogonal functionality followed by enrichment and subsequent quantitative proteomic analysis. Here, several improvements in the synthesis of the alkyne-containing isoprenoid analogue C15AlkOPP are reported to improve synthetic efficiency. Next, metabolic labeling with C15AlkOPP was optimized to obtain useful levels of metabolic incorporation of the probe in several types of primary cells. Those conditions were then used to study the prenylomes of motor neurons (ES-MNs), astrocytes (ES-As), and their embryonic stem cell progenitors (ESCs), which allowed for the identification of 54 prenylated proteins from ESCs, 50 from ES-MNs, and 84 from ES-As, representing all types of prenylation. Bioinformatic analysis revealed specific enriched pathways, including nervous system development, chemokine signaling, Rho GTPase signaling, and adhesion. Hierarchical clustering showed that most enriched pathways in all three cell types are related to GTPase activity and vesicular transport. In contrast, STRING analysis showed significant interactions in two populations that appear to be cell type dependent. The data provided herein demonstrates that robust incorporation of C15AlkOPP can be obtained in ES-MNs and related primary cells purified via magnetic-activated cell sorting allowing the identification and quantification of numerous prenylated proteins. These results suggest that metabolic labeling with C15AlkOPP should be an effective approach for investigating the role of prenylated proteins in primary cells in both normal cells and disease pathologies, including ALS.


Subject(s)
Alkynes , Astrocytes , Motor Neurons , Protein Prenylation , Astrocytes/metabolism , Astrocytes/cytology , Animals , Alkynes/chemistry , Alkynes/chemical synthesis , Motor Neurons/metabolism , Motor Neurons/cytology , Terpenes/chemistry , Terpenes/chemical synthesis , Terpenes/metabolism , Mice , Molecular Structure , Cells, Cultured
2.
J Nat Prod ; 87(4): 1092-1102, 2024 Apr 26.
Article in English | MEDLINE | ID: mdl-38557062

ABSTRACT

As an important bioactive molecular backbone, drimane meroterpenoids have drawn a great deal of attention from both pharmacologists and chemists. Inspired by the prevalidated success of conformational restriction in the discovery of novel pharmaceutical leads, two distinct tetracyclic drimane meroterpenoids, (-)-pelorol and (+)-aureol, were synthesized from the inexpensive starting material (-)-sclareol through 10 and 8 steps with 5.6% and 5.4% overall yield, respectively. The mild conditions, operational facility, and scalability enabled the expedient synthesis and biological exploration of not only natural products themselves but also their mimics. The first agrochemical exploration showed (-)-pelorol and (+)-aureol possessed good antifungal activity against Rhizoctonia solani, with EC50 values of 7.7 and 6.9 µM, respectively. This revealed that tetracyclic drimane meroterpenoids are valuable models for antifungal lead discovery.


Subject(s)
Antifungal Agents , Rhizoctonia , Antifungal Agents/pharmacology , Antifungal Agents/chemical synthesis , Antifungal Agents/chemistry , Molecular Structure , Rhizoctonia/drug effects , Terpenes/pharmacology , Terpenes/chemical synthesis , Terpenes/chemistry , Stereoisomerism , Sesquiterpenes/pharmacology , Sesquiterpenes/chemical synthesis , Sesquiterpenes/chemistry , Polycyclic Sesquiterpenes/pharmacology , Microbial Sensitivity Tests
3.
PLoS One ; 19(4): e0299218, 2024.
Article in English | MEDLINE | ID: mdl-38662654

ABSTRACT

To enhance the yield of the one-step synthesis of terpinyl acetate from α-pinene and acetic acid, this study evaluated α-hydroxycarboxylic acid (HCA)-boric acid composite catalysts based on orthogonal experimental design. The most important factor affecting the terpinyl acetate content in the product was the HCA content. The catalytic performance of the composite catalyst was related to the pKa1 of HCA. The tartaric acid-boric acid composite catalyst showed the highest catalytic activity. The α-pinene conversion reached 91.8%, and the terpinyl acetate selectivity reached 45.6%. When boric acid was replaced with B2O3, the HCA composite catalyst activity was enhanced, which reduced the use of HCA. When the lactic acid and B2O3 content accounted for 10% and 4% of the α-pinene mass content, respectively, the α-pinene conversion reached 93.2%, and the terpinyl acetate selectivity reached up to 47.1%. In addition, the presence of water was unfavorable to HCA-boric acid composite catalyst. However, a water content less than 1% of the α-pinene mass content improved the catalytic activity of HCA-B2O3. When the tartaric acid-B2O3 was used as catalyst, and the water content was 1% of the α-pinene mass content, the α-pinene conversion was 89.6%, and the terpinyl acetate selectivity was 47.5%.


Subject(s)
Bicyclic Monoterpenes , Boric Acids , Monoterpenes , Catalysis , Bicyclic Monoterpenes/chemistry , Boric Acids/chemistry , Monoterpenes/chemistry , Tartrates/chemistry , Acetates/chemistry , Carboxylic Acids/chemistry , Terpenes/chemistry , Terpenes/chemical synthesis
4.
Phytochemistry ; 222: 114089, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38626831

ABSTRACT

Meroterpenoids discovered in Rhododendrons species possess unique chemical structures and biological activities and are expected to become new drug targets for Alzheimer's disease, metabolic disorders, and chronic kidney disease, and these compounds have attracted increasing attention in recent years. In this study, Rhododendron meroterpenoids and their structures, classifications, racemate distribution, biosynthetic pathways, chemical synthesis, and bioactivities are reviewed prior to 2023.


Subject(s)
Rhododendron , Terpenes , Rhododendron/chemistry , Terpenes/chemistry , Terpenes/pharmacology , Terpenes/isolation & purification , Terpenes/chemical synthesis , Humans , Molecular Structure , Drug Discovery
5.
Science ; 375(6582): 745-752, 2022 02 18.
Article in English | MEDLINE | ID: mdl-35175791

ABSTRACT

The synthesis of terpenes is a large field of research that is woven deeply into the history of chemistry. Terpene biosynthesis is a case study of how the logic of a modular design can lead to diverse structures with unparalleled efficiency. This work leverages modern nickel-catalyzed electrochemical sp2-sp3 decarboxylative coupling reactions, enabled by silver nanoparticle-modified electrodes, to intuitively assemble terpene natural products and complex polyenes by using simple modular building blocks. The step change in efficiency of this approach is exemplified through the scalable preparation of 13 complex terpenes, which minimized protecting group manipulations, functional group interconversions, and redox fluctuations. The mechanistic aspects of the essential functionalized electrodes are studied in depth through a variety of spectroscopic and analytical techniques.


Subject(s)
Chemistry Techniques, Synthetic , Terpenes/chemical synthesis , Biological Products/chemical synthesis , Biological Products/chemistry , Catalysis , Cyclization , Electrochemical Techniques , Electrodes , Metal Nanoparticles , Nickel/chemistry , Oxidation-Reduction , Silver , Stereoisomerism , Terpenes/chemistry
6.
Org Biomol Chem ; 20(8): 1759-1768, 2022 02 23.
Article in English | MEDLINE | ID: mdl-35166295

ABSTRACT

Oxidative degradation and rearrangement of polycyclic polyprenylated acylphloroglucinols (PPAPs) has created diverse families of unique natural products that are attractive targets for biomimetic synthesis. Herein, we report a racemic synthesis of hyperibrin A and its oxidative radical cyclization to give yezo'otogirin C, followed by epoxidation and House-Meinwald rearrangement to give hypermogin D. We also investigated the biomimetic synthesis of norascyronone A via a similar radical cyclization pathway, with unexpected results that give insight into its biosynthesis.


Subject(s)
Biological Products , Biomimetic Materials , Phloroglucinol , Terpenes , Biological Products/chemical synthesis , Biological Products/chemistry , Biomimetic Materials/chemical synthesis , Biomimetic Materials/chemistry , Molecular Structure , Phloroglucinol/chemical synthesis , Phloroglucinol/chemistry , Terpenes/chemical synthesis , Terpenes/chemistry
7.
Molecules ; 26(23)2021 Nov 27.
Article in English | MEDLINE | ID: mdl-34885776

ABSTRACT

Cyclic oxyterpenes are natural products that are mostly used as fragrances, flavours and drugs by the cosmetic, food and pharmaceutical industries. However, only a few cyclic oxyterpenes are accessible via chemical syntheses, which are far from being ecofriendly. We report here the synthesis of six cyclic oxyterpenes derived from ß-pinene while respecting the principles of green and sustainable chemistry. Only natural or biosourced catalysts were used in mild conditions that were optimised for each synthesis. A new generation of ecocatalysts, derived from Mn-rich water lettuce, was prepared via green processes, characterised by MP-AES, XRPD and TEM analyses, and tested in catalysis. The epoxidation of ß-pinene led to the platform molecule, ß-pinene oxide, with a good yield, illustrating the efficacy of the new generation of ecocatalysts. The opening ß-pinene oxide was investigated in green conditions and led to new and regioselective syntheses of myrtenol, 7-hydroxy-α-terpineol and perillyl alcohol. Successive oxidations of perillyl alcohol could be performed using no hazardous oxidant and were controlled using the new generation of ecocatalysts generating perillaldehyde and cuminaldehyde.


Subject(s)
Green Chemistry Technology , Terpenes/chemical synthesis , Benzaldehydes/chemical synthesis , Benzaldehydes/chemistry , Bicyclic Monoterpenes/chemical synthesis , Bicyclic Monoterpenes/chemistry , Catalysis , Cymenes/chemical synthesis , Cymenes/chemistry , Elements , Monoterpenes/chemical synthesis , Monoterpenes/chemistry , Principal Component Analysis , Terpenes/chemistry , X-Ray Diffraction
8.
Molecules ; 26(22)2021 Nov 11.
Article in English | MEDLINE | ID: mdl-34833907

ABSTRACT

Botrytis cinerea is a ubiquitous fungus that affects hundreds of plants, resulting in economic losses to the horticulture and fruit industry. The search for new antifungal agents is a matter of current interest. Thus, in this work a series of geranylated phenols in which the side alkyl chain has been hydrated have been synthesized, and their activity against B. cinerea has been evaluated. The coupling of phenol and geraniol has been accomplished under microwave irradiation obtaining the highest reaction yields in the shortest reaction times. Hydration of the side chain was carried out in dioxane with p-toluenesulfonic acid polymer-bound as the catalyst. All synthesized compounds were tested against B. cinerea using the growth inhibition assay and EC50 values were determined. The results show that activity depends on the number and nature of functional groups in the phenol ring and hydration degree of the geranyl chain. The most active compound is 1,4-dihydroquinone with one hydroxyl group attached at the end of the alkyl chain. Results from a molecular docking study suggest that hydroxyl groups in the phenol ring and alkyl chain are important in the binding of compounds to the active site, and that the experimental antifungal activity correlates with the number of H-bond that can be formed in the binding site.


Subject(s)
Antifungal Agents/pharmacology , Botrytis/drug effects , Fungicides, Industrial/pharmacology , Phenols/pharmacology , Terpenes/pharmacology , Antifungal Agents/chemical synthesis , Antifungal Agents/chemistry , Botrytis/growth & development , Fungicides, Industrial/chemical synthesis , Fungicides, Industrial/chemistry , Molecular Docking Simulation , Phenols/chemical synthesis , Phenols/chemistry , Structure-Activity Relationship , Succinate Dehydrogenase/antagonists & inhibitors , Succinate Dehydrogenase/chemistry , Terpenes/chemical synthesis , Terpenes/chemistry
9.
Int J Mol Sci ; 22(20)2021 Oct 19.
Article in English | MEDLINE | ID: mdl-34681916

ABSTRACT

In a search of small molecules active against apoptosis-resistant cancer cells, including glioma, melanoma, and non-small cell lung cancer, we previously prepared α,ß- and γ,δ-unsaturated ester analogues of polygodial and ophiobolin A, compounds capable of pyrrolylation of primary amines and demonstrating double-digit micromolar antiproliferative potencies in cancer cells. In the current work, we synthesized dimeric and trimeric variants of such compounds in an effort to discover compounds that could crosslink biological primary amine containing targets. We showed that such compounds retain the pyrrolylation ability and possess enhanced single-digit micromolar potencies toward apoptosis-resistant cancer cells. Target identification studies of these interesting compounds are underway.


Subject(s)
Antineoplastic Agents/chemical synthesis , Sesquiterpenes/chemistry , Sesterterpenes/chemistry , Terpenes/chemical synthesis , A549 Cells , Animals , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Drug Screening Assays, Antitumor , Humans , MCF-7 Cells , Mice , Molecular Structure , Structure-Activity Relationship , Terpenes/chemistry , Terpenes/pharmacology
10.
Angew Chem Int Ed Engl ; 60(46): 24484-24487, 2021 11 08.
Article in English | MEDLINE | ID: mdl-34533883

ABSTRACT

Herein, we describe the first total synthesis of cochlearol B, a meroterpenoid natural product featuring a 4/5/6/6/6-fused pentacyclic structure. Key steps, oxidative cyclization and subsequent intramolecular [2+2] photocycloaddition, which constructed the pentacyclic structure in highly stereoselective manner, allowed efficient access to cochlearol B with the longest linear sequence of 16 steps, and in 9 % overall yield. Single-crystal X-ray crystallographic analysis clearly confirmed the stereochemistry of cochlearol B.


Subject(s)
Light , Terpenes/chemical synthesis , Biological Products/chemical synthesis , Biological Products/chemistry , Crystallography, X-Ray , Cycloaddition Reaction , Molecular Conformation , Oxidation-Reduction , Stereoisomerism , Terpenes/chemistry
11.
Int J Mol Sci ; 22(18)2021 Sep 13.
Article in English | MEDLINE | ID: mdl-34576028

ABSTRACT

Lung cancer is one of the most common cancers and the leading cause of death in humans worldwide. Non-small-cell lung cancer (NSCLC) accounts for approximately 85% of lung cancer cases and is often diagnosed at a late stage. Among patients with NSCLC, 50% die within 1 year after diagnosis. Even with clinical intervention, the 5-year survival rate is only approximately 20%. Therefore, the development of an advanced therapeutic strategy or novel agent is urgently required for treating NSCLC. Berberine exerts therapeutic activity toward NSCLC; therefore, its activity as an antitumor agent needs to be explored further. In this study, three terpenylated-bromide derivatives of berberrubine were synthesized and their anti-NSCLC activities were evaluated. Each derivative had higher anti-NSCLCs activity than berberrubine and berberine. Among them, 9-O-gernylberberrubine bromide (B4) and 9-O-farnesylberberrubine bromide (B5) showed greater growth inhibition, cell-cycle regulation, in vitro tumorigenesis suppression, and tumor migration reduction. In addition, some degree of apoptosis and autophagic flux blocking was noted in the cells under B4 and B5 treatments. Our study demonstrates that the berberrubine derivatives, B4 and B5, exhibit impressive anti-NSCLC activities and have potential for use as chemotherapeutic agents against NSCLC.


Subject(s)
Berberine/analogs & derivatives , Carcinoma, Non-Small-Cell Lung/drug therapy , Cell Movement/drug effects , Cell Proliferation/drug effects , A549 Cells , Antineoplastic Agents/pharmacology , Apoptosis/drug effects , Berberine/chemical synthesis , Berberine/chemistry , Berberine/pharmacology , Bromides/chemistry , Carcinogenesis/drug effects , Carcinoma, Non-Small-Cell Lung/pathology , Humans , Terpenes/chemical synthesis , Terpenes/pharmacology
12.
Photochem Photobiol Sci ; 20(10): 1357-1378, 2021 Oct.
Article in English | MEDLINE | ID: mdl-34537894

ABSTRACT

Natural products and their analogue have played a key role in the drug discovery and development process. In the laboratory, the total synthesis of secondary metabolites is very useful in ascertaining the hypothetical complex structure of molecules of natural origin. Total synthesis of natural products using Norrish type I and II reactions as a crucial step has been explored in this overview. Norrish reactions are important photo-induced transformations of carbonyl compounds in organic synthetic chemistry and are connected in numerous industrially and biologically relevant procedures and the processing of carbonyl compounds in the atmosphere. The present review tries to focus on the brilliant applications of Norrish type I and II photochemical reactions as a key step in the total synthesis of natural products and highlights on natural sources, structures, and biological activities of the promising natural products for the first time elegantly.


Subject(s)
Biological Products/chemical synthesis , Alkaloids/chemical synthesis , Alkaloids/chemistry , Anti-Bacterial Agents/chemical synthesis , Anti-Bacterial Agents/chemistry , Biological Products/chemistry , Cyclization/radiation effects , Light , Naphthalenes/chemical synthesis , Naphthalenes/chemistry , Polyketides/chemical synthesis , Polyketides/chemistry , Quantum Theory , Spiro Compounds/chemical synthesis , Spiro Compounds/chemistry , Terpenes/chemical synthesis , Terpenes/chemistry
13.
Angew Chem Int Ed Engl ; 60(42): 22735-22739, 2021 10 11.
Article in English | MEDLINE | ID: mdl-34398517

ABSTRACT

Garsubellin A is a meroterpene capable of enhancing the enzyme choline acetyltransferase whose decreased level is believed to play a central role in the symptoms of Alzheimer's disease. Due to the potentially useful biological activity together with the novel bridged and fused cyclic molecular architecture, garsubellin A has garnered substantial synthetic interest, but its absolute stereostructure has been undetermined. We report here the first enantioselective total synthesis of (+)-garsubellin A. Our synthesis relies on stereoselective fashioning of a cyclohexanone framework and double conjugate addition of 1,2-ethanedithiol that promotes aldol cyclization to build the bicyclic [3.3.1] skeleton. The twelve-step, protecting group-free synthetic route has enabled the syntheses of both the natural (-)-garsubellin A and its unnatural (+)-antipode for biological evaluations.


Subject(s)
Terpenes/chemical synthesis , Biological Products/chemical synthesis , Biological Products/chemistry , Bridged Bicyclo Compounds/chemistry , Crystallography, X-Ray , Cyclization , Molecular Conformation , Stereoisomerism , Terpenes/chemistry
14.
Bioorg Chem ; 114: 105150, 2021 09.
Article in English | MEDLINE | ID: mdl-34328853

ABSTRACT

Manoalide was studied as a potential anti-inflammatory agent for the last forty years and more than 200 publications and 180 patents were reported on this compound. However, the configurations at positions 24 and 25 and configuration-dependent bioactivity were not yet studied. In the current report, ten manoalide-like sesterterpenoids were isolated from Luffariella sp. (1-10). These stereoisomers were identified and separated for the first time since 1980 and their configurations at positions 24 and 25 were determined by analyzing their spectroscopic spectra. The configuration-dependent anti-proliferative activity of manoalide derivatives was examined by evaluating their effect on four leukemic cancer cell lines (Molt 4, K562, Sup-T1, and U937). The 24R,25S-isomers exhibited the most potent activity (IC50 0.50-7.67 µM). The anti-proliferative mechanism of action of 24R,25S-manoalide (7) was further studied on Molt 4 cells. Compound 7 exhibited apoptotic activity on Molt 4 cells through the disruption of mitochondrial membrane potential (MMP) and the generation of intracellular reactive oxygen species (ROS). It also inhibited the activity of human topoisomerase I and II. The apoptotic-inducing effect of 7 was further supported by the in vivo experiment by suppressing the volume of xenograft tumor growth (66.11%) compared with the control.


Subject(s)
Antineoplastic Agents/pharmacology , Sesterterpenes/pharmacology , Terpenes/pharmacology , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Apoptosis , Cell Line, Tumor , Cell Proliferation/drug effects , Dose-Response Relationship, Drug , Drug Screening Assays, Antitumor , Humans , Molecular Structure , Sesterterpenes/chemical synthesis , Sesterterpenes/chemistry , Stereoisomerism , Structure-Activity Relationship , Terpenes/chemical synthesis , Terpenes/chemistry
15.
Mar Drugs ; 19(5)2021 May 13.
Article in English | MEDLINE | ID: mdl-34068313

ABSTRACT

The divergent total synthesis strategy can be successfully applied to the preparation of families of natural products using a common late-stage pluripotent intermediate. This approach is a powerful tool in organic synthesis as it offers opportunities for the efficient preparation of structurally related compounds. This article reviews the synthesis of the marine natural product aureol, as well as its use as a common intermediate in the divergent synthesis of other marine natural and non-natural tetracyclic meroterpenoids.


Subject(s)
Aquatic Organisms/chemistry , Biological Products/chemistry , Heterocyclic Compounds, 4 or More Rings/chemical synthesis , Sesquiterpenes/chemical synthesis , Terpenes/chemical synthesis , Animals , Biological Products/pharmacology , Heterocyclic Compounds, 4 or More Rings/chemistry , Sesquiterpenes/chemistry , Terpenes/chemistry
16.
Int J Mol Sci ; 22(9)2021 May 10.
Article in English | MEDLINE | ID: mdl-34068609

ABSTRACT

Terpenoids with lactone moieties have been indicated to possess high bioactivity. Certain terpenoid lactones exist in nature, in plants and animals, but they can also be obtained by chemical synthesis. Terpenoids possessing lactone moieties are known for their cytotoxic, anti-inflammatory, antimicrobial, anticancer, and antimalarial activities. Moreover, one terpenoid lactone, artemisinin, is used as a drug against malaria. Because of these abilities, there is constant interest in new terpenoid lactones that are both isolated and synthesized, and their biological activities have been verified. In some cases, the activity of the terpenoid lactone is specifically connected to the lactone moiety. Recent works have revealed that new terpenoid lactones can demonstrate such functions and are thus considered to be potential active agents against many diseases.


Subject(s)
Artemisinins/chemistry , Lactones/chemistry , Sesquiterpenes/chemistry , Terpenes/chemistry , Anti-Inflammatory Agents/chemical synthesis , Anti-Inflammatory Agents/chemistry , Anti-Inflammatory Agents/therapeutic use , Antimalarials/chemical synthesis , Antimalarials/chemistry , Antimalarials/therapeutic use , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Antineoplastic Agents/therapeutic use , Artemisinins/chemical synthesis , Artemisinins/therapeutic use , Humans , Lactones/chemical synthesis , Lactones/therapeutic use , Plant Extracts/chemistry , Plant Extracts/therapeutic use , Sesquiterpenes/chemical synthesis , Sesquiterpenes/therapeutic use , Terpenes/chemical synthesis , Terpenes/therapeutic use
17.
PLoS Negl Trop Dis ; 15(6): e0009488, 2021 06.
Article in English | MEDLINE | ID: mdl-34106933

ABSTRACT

Mycetoma is a devastating neglected tropical infection of the subcutaneous tissue and most commonly caused by the fungus Madurella mycetomatis. Treatment of mycetoma consists of a combination of a long term antifungal treatment with itraconazole and surgery. However, treatment is associated with low success rates. Therefore, there is a need to identify novel treatments for mycetoma. CIN-102 is a synthetic partial copy of cinnamon oils with activity against many pathogenic bacteria and fungi. In this study we determined the in vitro activity of CIN-102 against 21 M. mycetomatis isolates and its in vivo efficacy in a M. mycetomatis infected Galleria mellonella larval model. In vitro, CIN-102 was active against M. mycetomatis with MICs ranging from 32 µg/mL to 512 µg/mL. 128 µg/mL was needed to inhibit the growth in 50% of tested isolates. In vivo, concentrations below the MIC of 40 mg/kg and 80 mg/kg CIN-102 prolonged larval survival, but higher concentrations of CIN-102 did not.


Subject(s)
Antifungal Agents/pharmacology , Benzoates/pharmacology , Cinnamates/pharmacology , Cinnamomum zeylanicum/chemistry , Madurella/drug effects , Mycetoma/microbiology , Terpenes/pharmacology , Animals , Benzoates/chemical synthesis , Cinnamates/chemical synthesis , Drug Combinations , Drug Synergism , Humans , Larva/drug effects , Larva/growth & development , Madurella/genetics , Madurella/growth & development , Microbial Sensitivity Tests , Moths/microbiology , Mycetoma/drug therapy , Terpenes/chemical synthesis
18.
Acc Chem Res ; 54(8): 1843-1855, 2021 04 20.
Article in English | MEDLINE | ID: mdl-33793197

ABSTRACT

Natural products are biosynthesized from a limited pool of starting materials via pathways that obey the same chemical logic as textbook organic reactions. Given the structure of a natural product, it is therefore often possible to predict its likely biosynthesis. Although biosynthesis mainly occurs in the highly specific chemical environments of enzymes, the field of biomimetic total synthesis attempts to replicate predisposed pathways using chemical reagents.We have followed several guidelines in our biomimetic approach to total synthesis. The overarching aim is to construct the same skeletal C-C and C-heteroatom bonds and in the same order as our biosynthetic hypothesis. In order to explore the innate reactivity of (bio)synthetic intermediates, the use of protecting groups is avoided or at least minimized. The key step, which is usually a cascade reaction, should be predisposed to selectively generate molecular complexity under substrate control (e.g., cycloadditions, radical cyclizations, carbocation rearrangements). In general, simple reagents and mild conditions are used; many of the total syntheses presented in this Account could be achieved using pre-1980s methodology. We have focused almost exclusively on the synthesis of meroterpenoids, that is, natural products of mixed terpene and aromatic polyketide origin, using commercially available terpenes and electron-rich aromatic compounds as starting materials. Finally, all of the syntheses in this Account involve a dearomatization step as a means to trigger a cascade reaction or to construct stereochemical complexity from a planar, aromatic intermediate.A biomimetic strategy can offer several advantages to a total synthesis project. Most obviously, successful biomimetic syntheses are usually concise and efficient, naturally adhering to the atom, step, and redox economies of synthesis. For example, in this Account, we describe a four-step synthesis of garcibracteatone and a three-step synthesis of nyingchinoid A. It is difficult to imagine shorter, non-biomimetic syntheses of these intricate molecules. Furthermore, biomimetic synthesis gives insight into biosynthesis by revealing the chemical relationships between biosynthetic intermediates. Access to these natural substrates allows collaboration with biochemists to help uncover the function of newly discovered enzymes and elucidate biosynthetic pathways, as demonstrated in our work on the napyradiomycin family. Third, by making biosynthetic connections between natural products, we can sometimes highlight incorrect structural assignments, and herein we discuss structure revisions of siphonodictyal B, rasumatranin D, and furoerioaustralasine. Last, biomimetic synthesis motivates the prediction of "undiscovered natural products" (i.e., missing links in biosynthesis), which inspired the isolation of prenylbruceol A and isobruceol.


Subject(s)
Biological Products/chemical synthesis , Biomimetics/methods , Terpenes/chemical synthesis , Benzopyrans/chemical synthesis , Benzopyrans/chemistry , Biological Products/chemistry , Cyclization , Cycloaddition Reaction , Oxidation-Reduction , Phloroglucinol/chemical synthesis , Phloroglucinol/chemistry , Polycyclic Compounds/chemical synthesis , Polycyclic Compounds/chemistry , Terpenes/chemistry
19.
Molecules ; 26(8)2021 Apr 17.
Article in English | MEDLINE | ID: mdl-33920588

ABSTRACT

The synthesis of glycosides and modified nucleosides represents a wide research field in organic chemistry. The classical methodology is based on coupling reactions between a glycosyl donor and an acceptor. An alternative strategy for new C-nucleosides is used in this approach, which consists of modifying a pre-existent furyl aglycone. This approach is applied to obtain novel pyridazine C-nucleosides starting with 2- and 3-(ribofuranosyl)furans. It is based on singlet oxygen [4+2] cycloaddition followed by reduction and hydrazine cyclization under neutral conditions. The mild three-step one-pot procedure leads stereoselectively to novel pyridazine C-nucleosides of pharmacological interest. The use of acetyls as protecting groups provides an elegant direct route to a deprotected new pyridazine C-nucleoside.


Subject(s)
Furans/chemistry , Nucleosides/chemistry , Pyridazines/chemistry , Terpenes/chemistry , Chemistry, Organic/trends , Glycosides/chemical synthesis , Glycosides/chemistry , Nucleosides/chemical synthesis , Pyridazines/chemical synthesis , Terpenes/chemical synthesis
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