Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 15 de 15
Filter
Add more filters










Publication year range
1.
Angew Chem Int Ed Engl ; 63(19): e202401107, 2024 May 06.
Article in English | MEDLINE | ID: mdl-38358802

ABSTRACT

The first total synthesis of dragocins A-C, remarkable natural products containing an unusual C4' oxidized ribose architecture bridged by a polyhydroxylated pyrrolidine, is presented through a route featuring a number of uncommon maneuvers. Several generations towards the target molecules are presented, including the spectacular failure of a key C-H oxidation on a late-stage intermediate. The final route features rapid, stereocontrolled access to a densely functionalized pyrrolidine and an unprecedented diastereoselective oxidative electrochemical cyclization to forge the hallmark 9-membered ring. Preliminary studies suggest this electrochemical oxidation protocol is generally useful.

2.
Chem Commun (Camb) ; 59(44): 6694-6697, 2023 May 30.
Article in English | MEDLINE | ID: mdl-37183480

ABSTRACT

We report a mild, electrochemical trihydrodefluorination (e-THDF) for breaking highly stable C-F bonds in trifluoromethyl arenes to form the corresponding methyl arene products. Uniquely, this "green" approach relies on the in situ generation of Lewis acidic silyl cations that mediate fluoride abstraction. Overall, e-THDF has significantly improved functional group tolerance over current methods and should inspire the continued development of defluorinative processes.

3.
Nat Protoc ; 17(9): 2008-2024, 2022 09.
Article in English | MEDLINE | ID: mdl-35788720

ABSTRACT

Nucleoside analogs are valuable commodities in the development of antisense oligonucleotides or as stand-alone antiviral and anticancer therapies. Syntheses of nucleoside analogs are typically challenged by a reliance on chiral pool starting materials and inefficient synthetic routes that are not readily amenable to diversification. The novel methodology described in this protocol addresses several longstanding challenges in nucleoside analog synthesis by enabling flexible and selective access to nucleoside analogs possessing variable nucleobase substitution, D- or L-configuration, selective protection of C3'/C5' alcohols and C2' or C4' derivatizations. This protocol provides direct access to C3'/C5' protected nucleoside analogs in three steps from simple, achiral starting materials and is described on both research (2.8 g) and process (30 g) scales for the synthesis of C3'/C5'-acetonide protected uridine. Using this protocol, proline catalyzes the fluorination of simple heteroaryl-substituted aldehyde starting materials, which are then directly engaged in a one-pot enantioselective aldol reaction with a dioxanone. Reduction, followed by intramolecular annulative fluoride displacement, forges the nucleoside analog. The three-step parent protocol can be completed in ~5 d by using simple mix-and-stir reaction procedures and standard column chromatographic purification techniques.


Subject(s)
Nucleosides
4.
J Am Chem Soc ; 143(20): 7859-7867, 2021 05 26.
Article in English | MEDLINE | ID: mdl-33983721

ABSTRACT

The site-specific oxidation of strong C(sp3)-H bonds is of uncontested utility in organic synthesis. From simplifying access to metabolites and late-stage diversification of lead compounds to truncating retrosynthetic plans, there is a growing need for new reagents and methods for achieving such a transformation in both academic and industrial circles. One main drawback of current chemical reagents is the lack of diversity with regard to structure and reactivity that prevents a combinatorial approach for rapid screening to be employed. In that regard, directed evolution still holds the greatest promise for achieving complex C-H oxidations in a variety of complex settings. Herein we present a rationally designed platform that provides a step toward this challenge using N-ammonium ylides as electrochemically driven oxidants for site-specific, chemoselective C(sp3)-H oxidation. By taking a first-principles approach guided by computation, these new mediators were identified and rapidly expanded into a library using ubiquitous building blocks and trivial synthesis techniques. The ylide-based approach to C-H oxidation exhibits tunable selectivity that is often exclusive to this class of oxidants and can be applied to real-world problems in the agricultural and pharmaceutical sectors.


Subject(s)
Ammonium Compounds/chemistry , Electrochemical Techniques , Molecular Structure , Oxidation-Reduction
5.
Commun Chem ; 4(1): 96, 2021 Jun 24.
Article in English | MEDLINE | ID: mdl-36697548

ABSTRACT

Glycomimetics are structural mimics of naturally occurring carbohydrates and represent important therapeutic leads in several disease treatments. However, the structural and stereochemical complexity inherent to glycomimetics often challenges medicinal chemistry efforts and is incompatible with diversity-oriented synthesis approaches. Here, we describe a one-pot proline-catalyzed aldehyde α-functionalization/aldol reaction that produces an array of stereochemically well-defined glycomimetic building blocks containing fluoro, chloro, bromo, trifluoromethylthio and azodicarboxylate functional groups. Using density functional theory calculations, we demonstrate both steric and electrostatic interactions play key diastereodiscriminating roles in the dynamic kinetic resolution. The utility of this simple process for generating large and diverse libraries of glycomimetics is demonstrated in the rapid production of iminosugars, nucleoside analogues, carbasugars and carbohydrates from common intermediates.

6.
Science ; 369(6504): 725-730, 2020 08 07.
Article in English | MEDLINE | ID: mdl-32764073

ABSTRACT

Nucleoside analogs are commonly used in the treatment of cancer and viral infections. Their syntheses benefit from decades of research but are often protracted, unamenable to diversification, and reliant on a limited pool of chiral carbohydrate starting materials. We present a process for rapidly constructing nucleoside analogs from simple achiral materials. Using only proline catalysis, heteroaryl-substituted acetaldehydes are fluorinated and then directly engaged in enantioselective aldol reactions in a one-pot reaction. A subsequent intramolecular fluoride displacement reaction provides a functionalized nucleoside analog. The versatility of this process is highlighted in multigram syntheses of d- or l-nucleoside analogs, locked nucleic acids, iminonucleosides, and C2'- and C4'-modified nucleoside analogs. This de novo synthesis creates opportunities for the preparation of diversity libraries and will support efforts in both drug discovery and development.


Subject(s)
Antineoplastic Agents/chemical synthesis , Antiviral Agents/chemical synthesis , Nucleosides/chemical synthesis , Antineoplastic Agents/chemistry , Antiviral Agents/chemistry , Nucleosides/chemistry
7.
Org Lett ; 22(5): 1785-1790, 2020 Mar 06.
Article in English | MEDLINE | ID: mdl-32053386

ABSTRACT

The reaction of nucleophilic tertiary amines with trifluoromethyl and pentafluoroethyl methyl ethers provides quaternary ammonium trifluoromethoxide (NR4OCF3) and pentafluoroethoxide (NR4OCF2CF3) salts, respectively, in good yields. The new trifluoromethoxide salts disclosed herein are uniquely stable for extended periods of time in both the solid state and in solution, which complements contemporary reagents. Here we describe the preparation of a range of NR4OCF3 salts, their long-term stability, and utility in substitution reactions.

8.
Nat Commun ; 9(1): 3700, 2018 09 07.
Article in English | MEDLINE | ID: mdl-30194298

ABSTRACT

In the originally published version of this Article, the affiliation details for Tracey M. Gloster were incorrectly given as 'Department of Molecular Biology and Biochemistry, Simon Fraser University, 8888 University Drive, Burnaby, BC V5A 1S6, Canada'. The correct affiliation is 'Biomedical Sciences Research Complex, University of St Andrews, North Haugh, St Andrews, Fife, KY16 9ST, UK'. This has now been corrected in both the PDF and HTML versions of the Article.

9.
Chem Commun (Camb) ; 54(71): 9985-9988, 2018 Sep 14.
Article in English | MEDLINE | ID: mdl-30123905

ABSTRACT

Acyl fluorides are versatile acylating agents owing to their unique stability. Their synthesis, however, can present challenges and is typically accomplished through deoxyfluorination of carboxylic acids. Here, we demonstrate that acyl fluorides can be prepared directly from aldehydes via a C(sp2)-H fluorination reaction involving the inexpensive photocatalyst sodium decatungstate and electrophilic fluorinating agent N-fluorobenzenesulfonimide. This convenient fluorination strategy enables direct conversion of aliphatic and aromatic aldehydes into acylating agents.

10.
Nat Commun ; 9(1): 3243, 2018 08 13.
Article in English | MEDLINE | ID: mdl-30104598

ABSTRACT

Mechanism-based glycoside hydrolase inhibitors are carbohydrate analogs that mimic the natural substrate's structure. Their covalent bond formation with the glycoside hydrolase makes these compounds excellent tools for chemical biology and potential drug candidates. Here we report the synthesis of cyclohexene-based α-galactopyranoside mimics and the kinetic and structural characterization of their inhibitory activity toward an α-galactosidase from Thermotoga maritima (TmGalA). By solving the structures of several enzyme-bound species during mechanism-based covalent inhibition of TmGalA, we show that the Michaelis complexes for intact inhibitor and product have half-chair (2H3) conformations for the cyclohexene fragment, while the covalently linked intermediate adopts a flattened half-chair (2H3) conformation. Hybrid QM/MM calculations confirm the structural and electronic properties of the enzyme-bound species and provide insight into key interactions in the enzyme-active site. These insights should stimulate the design of mechanism-based glycoside hydrolase inhibitors with tailored chemical properties.


Subject(s)
Carbasugars/pharmacology , Enzyme Inhibitors/pharmacology , Glycoside Hydrolases/antagonists & inhibitors , Biocatalysis , Carbasugars/chemical synthesis , Carbasugars/chemistry , Catalytic Domain , Cyclohexenes/chemical synthesis , Cyclohexenes/chemistry , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/chemistry , Galactose/analogs & derivatives , Glycoside Hydrolases/chemistry , Kinetics , Molecular Dynamics Simulation , Quantum Theory , Thermotoga maritima/enzymology
11.
Chem Sci ; 9(25): 5608-5613, 2018 Jul 07.
Article in English | MEDLINE | ID: mdl-30061993

ABSTRACT

Functionalization of heterocyclic scaffolds with mono- or difluoroalkyl groups provides unique opportunities to modulate drug pKa, influence potency and membrane permeability, and attenuate metabolism. While advances in the addition of fluoroalkyl radicals to heterocycles have been made, direct C(sp3)-H heterobenzylic fluorination is comparatively unexplored. Here we demonstrate both mono- and difluorination of a range of alkyl heterocycles using a convenient process that relies on transient sulfonylation by the electrophilic fluorinating agent N-fluorobenzenesulfonimide. We also report heterobenzylic trifluoromethylthiolation and 18F-fluorination, providing a suite of reactions for late-stage C(sp3)-H functionalization of drug leads and radiotracer discovery.

12.
J Chem Phys ; 147(6): 064308, 2017 Aug 14.
Article in English | MEDLINE | ID: mdl-28810791

ABSTRACT

A general, spherical, rigid model is introduced for describing rotating and translating particles. The model contains a parameter, which we label γ, that smoothly interpolates between the smooth hard sphere (γ = 0) and rough hard sphere (γ = 1) limits. Analytic expressions for transport coefficients are determined for the general model in the low density limit and compared with those for the smooth and rough hard sphere cases. While the diffusion constant decreases monotonically on moving from the smooth to the rough sphere limits, both the viscosity and thermal conductivity first decrease and then increase, thereby producing a minimum between the two limits. This qualitative change in behaviour is new and suggests translational-rotational coupling acts to decrease the values of the transport coefficients (in contrast to the prediction from the rough sphere model). Although the model still has the (known) deficiencies of rigid models, it is more flexible than either the smooth or rough sphere model and should find use in better representing molecular behaviour. The general model provides a consistent representation of the transport coefficients because it has proper, microscopic collision dynamics obeying conservation laws for total momentum, total angular momentum, and total energy.

13.
Angew Chem Int Ed Engl ; 56(3): 748-752, 2017 01 16.
Article in English | MEDLINE | ID: mdl-27976511

ABSTRACT

α-Arylcyclobutanones display unique reactivity that makes them valuable synthetic intermediates and target molecules. We describe the preparation of α-aryl- and α-heteroarylcyclobutanones through a direct α-arylation reaction. Problematic fragmentations are avoided by the use of LiOt Bu, which promotes a rapid but reversible self-aldol reaction that slowly releases the enolate required for α-arylation. We also demonstrate the ring expansion of α-arylcyclobutanones, a process that is highlighted in the stereoselective synthesis of 1-methoxy coniothyrinone D.

14.
Angew Chem Int Ed Engl ; 55(42): 13244-13248, 2016 10 10.
Article in English | MEDLINE | ID: mdl-27653634

ABSTRACT

Pyridine features prominently in pharmaceuticals and drug leads, and methods to selectively manipulate pyridine basicity or metabolic stability are highly sought after. A robust, metal-free direct fluorination of unactivated pyridylic C-H bonds was developed. This convenient reaction shows high functional-group tolerance and offers complimentary selectivity to existing C-H fluorination strategies. Importantly, this late-stage pyridylic C-H fluorination provides opportunities to rationally modulate the basicity, lipophilicity, and metabolic stability of alkylpyridine drugs.

15.
Nat Commun ; 6: 6903, 2015 Apr 23.
Article in English | MEDLINE | ID: mdl-25903019

ABSTRACT

Iminosugars have attracted increasing attention as chemical probes, chaperones and leads for drug discovery. Despite several clinical successes, their de novo synthesis remains a significant challenge that also limits their integration with modern high-throughput screening technologies. Herein, we describe a unique synthetic strategy that converts a wide range of acetaldehyde derivatives into iminosugars and imino-C-nucleoside analogues in two or three straightforward transformations. We also show that this strategy can be readily applied to the rapid production of indolizidine and pyrrolizidine iminosugars. The high levels of enantio- and diastereoselectivity, excellent overall yields, convenience and broad substrate scope make this an appealing process for diversity-oriented synthesis, and should enable drug discovery efforts.


Subject(s)
Imines/chemical synthesis , Imino Sugars/chemical synthesis , Indolizidines/chemical synthesis , Nucleosides/chemistry , Nucleosides/chemical synthesis , Drug Discovery
SELECTION OF CITATIONS
SEARCH DETAIL
...