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1.
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.

2.
Chembiochem ; 21(4): 543-549, 2020 02 17.
Article in English | MEDLINE | ID: mdl-31381227

ABSTRACT

DNA-encoded chemical library technologies enable the screening of large combinatorial libraries of chemically and structurally diverse molecules, including short cyclic peptides. A challenge in the combinatorial synthesis of cyclic peptides is the final step, the cyclization of linear peptides that typically suffers from incomplete reactions and large variability between substrates. Several efficient peptide cyclization strategies rely on the modification of thiol groups, such as the formation of disulfide or thioether bonds between cysteines. In this work, we established a strategy and reaction conditions for the efficient chemical synthesis of cyclic peptide-DNA conjugates based on linking the side chains of cysteines. We tested two different thiol-protecting groups and found that tert-butylthio (S-tBu) works best for incorporating a pair of cysteines, and we show that the DNA-linked peptides can be efficiently cyclized through disulfide and thioether bond formation. In combination with established procedures for DNA encoding, the strategy for incorporation of cysteines may be readily applied for the generation and screening of disulfide- and thioether-cyclized peptide libraries.


Subject(s)
DNA/chemical synthesis , Peptide Library , Peptides, Cyclic/chemical synthesis , Cyclization , Disulfides/chemistry , Sulfides/chemistry
3.
Chemistry ; 23(54): 13319-13322, 2017 Sep 27.
Article in English | MEDLINE | ID: mdl-28771904

ABSTRACT

Medium-sized rings, particularly the corresponding cyclic peptides, are challenging synthetic targets. In the present study, we report an approach to medium-sized cyclic peptides through targeted formation and collapse of cyclol intermediates. This methodology operates on ß-amino imides derived from 2,5-diketopiperazines and offers a straightforward transition from frequently examined scaffolds in drug discovery to a rarely visited class of medium-sized rings.


Subject(s)
Peptides, Cyclic/chemical synthesis , Crystallography, X-Ray , Cyclization , Diketopiperazines/chemistry , Imides/chemistry , Isomerism , Molecular Conformation
4.
Angew Chem Int Ed Engl ; 54(51): 15429-33, 2015 Dec 14.
Article in English | MEDLINE | ID: mdl-26545827

ABSTRACT

Pyrrolidine-based iminocyclitols are a promising class of glycosidase inhibitors. Reported herein is a convenient epimerization strategy that provides direct access to a range of stereoisomeric iminocyclitol inhibitors of O-GlcNAcase (OGA), the enzyme responsible for catalyzing removal of O-GlcNAc from nucleocytoplasmic proteins. Structural details regarding the binding of these inhibitors to a bacterial homologue of OGA reveal the basis for potency. These compounds are orally available and permeate into rodent brain to increase O-GlcNAc, and should prove useful tools for studying the role of OGA in health and disease.


Subject(s)
Brain/metabolism , Cyclitols/pharmacokinetics , Enzyme Inhibitors/pharmacokinetics , beta-N-Acetylhexosaminidases/antagonists & inhibitors , Animals , Cyclitols/chemistry , Enzyme Inhibitors/chemistry , Mice , Mice, Inbred C57BL , Molecular Structure , Stereoisomerism
5.
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
6.
Org Lett ; 15(14): 3554-7, 2013 Jul 19.
Article in English | MEDLINE | ID: mdl-23819733

ABSTRACT

A tandem, proline-catalyzed α-chlorination/aldol reaction is described that involves a dynamic kinetic resolution of α-chloroaldehyde intermediates. The resulting syn-chlorohydrins are produced with good to excellent diastereoselectivity in high enantiopurity and provide new opportunities for the synthesis of carbohydrates.


Subject(s)
Carbohydrates/chemical synthesis , Proline/chemistry , Carbohydrates/chemistry , Catalysis , Halogenation , Kinetics , Molecular Dynamics Simulation , Molecular Structure , Stereoisomerism
7.
J Am Chem Soc ; 135(24): 9055-77, 2013 Jun 19.
Article in English | MEDLINE | ID: mdl-23692629

ABSTRACT

The modular synthesis of 7 libraries containing 51 self-assembling amphiphilic Janus dendrimers with the monosaccharides D-mannose and D-galactose and the disaccharide D-lactose in their hydrophilic part is reported. These unprecedented sugar-containing dendrimers are named amphiphilic Janus glycodendrimers. Their self-assembly by simple injection of THF or ethanol solution into water or buffer and by hydration was analyzed by a combination of methods including dynamic light scattering, confocal microscopy, cryogenic transmission electron microscopy, Fourier transform analysis, and micropipet-aspiration experiments to assess mechanical properties. These libraries revealed a diversity of hard and soft assemblies, including unilamellar spherical, polygonal, and tubular vesicles denoted glycodendrimersomes, aggregates of Janus glycodendrimers and rodlike micelles named glycodendrimer aggregates and glycodendrimermicelles, cubosomes denoted glycodendrimercubosomes, and solid lamellae. These assemblies are stable over time in water and in buffer, exhibit narrow molecular-weight distribution, and display dimensions that are programmable by the concentration of the solution from which they are injected. This study elaborated the molecular principles leading to single-type soft glycodendrimersomes assembled from amphiphilic Janus glycodendrimers. The multivalency of glycodendrimersomes with different sizes and their ligand bioactivity were demonstrated by selective agglutination with a diversity of sugar-binding protein receptors such as the plant lectins concanavalin A and the highly toxic mistletoe Viscum album L. agglutinin, the bacterial lectin PA-IL from Pseudomonas aeruginosa, and, of special biomedical relevance, human adhesion/growth-regulatory galectin-3 and galectin-4. These results demonstrated the candidacy of glycodendrimersomes as new mimics of biological membranes with programmable glycan ligand presentations, as supramolecular lectin blockers, vaccines, and targeted delivery devices.


Subject(s)
Dendrimers/chemistry , Galactose/chemistry , Lactose/chemistry , Lectins/metabolism , Mannose/chemistry , Small Molecule Libraries/chemistry , Azides/chemical synthesis , Azides/chemistry , Azides/metabolism , Chemistry Techniques, Synthetic/methods , Dendrimers/chemical synthesis , Dendrimers/metabolism , Galactose/chemical synthesis , Galactose/metabolism , Humans , Lactose/chemical synthesis , Lactose/metabolism , Mannose/chemical synthesis , Mannose/metabolism , Models, Molecular , Small Molecule Libraries/chemical synthesis , Small Molecule Libraries/metabolism , Surface-Active Agents/chemical synthesis , Surface-Active Agents/chemistry , Surface-Active Agents/metabolism
8.
J Org Chem ; 77(6): 2971-7, 2012 Mar 16.
Article in English | MEDLINE | ID: mdl-22369518

ABSTRACT

A catalytic synthesis of novel biaryl-linked divalent glycosides was achieved using an electroreductive palladium-catalyzed iodoaryl-iodoaryl coupling reaction. This new method was optimized for the synthesis of divalent biaryl-linked mannopyranosides that was subsequently generalized toward several carbohydrate substrates with yields up to 96%.


Subject(s)
Carbohydrates/chemistry , Cross-Linking Reagents/chemistry , Glycosides/chemistry , Palladium/chemistry , Catalysis , Molecular Structure
9.
Carbohydr Res ; 346(12): 1479-89, 2011 Sep 06.
Article in English | MEDLINE | ID: mdl-21571260

ABSTRACT

A small library of bivalent α-D-mannopyranosides having rigid linkers was constructed in order to evaluate the effects of inter-saccharide distances upon multivalent binding interactions with plant and bacterial lectins. To this end, iodoaryl and propargyl α-D-mannopyranosides were synthesized and the former treated with TMS-acetylene under palladium chemistry to provide their corresponding ethynylaryl derivatives. A library of 15 dimeric members was then obtained using Lewis acid catalyzed glycosidation, aryl-aryl homocoupling, transition metal catalyzed Sonogashira cross-coupling reactions, and oxidative Glaser homocoupling.


Subject(s)
Bacterial Proteins/chemistry , Combinatorial Chemistry Techniques/methods , Glycoconjugates/chemical synthesis , Mannose/chemical synthesis , Plant Lectins/chemistry , Small Molecule Libraries/chemical synthesis , Bacteria , Bacterial Proteins/metabolism , Carbohydrate Conformation , Catalysis , Cross-Linking Reagents , Dimerization , Glycoconjugates/metabolism , Lewis Acids/chemistry , Mannose/metabolism , Palladium/chemistry , Plant Lectins/metabolism , Plants , Protein Binding , Receptors, Mitogen/chemistry , Receptors, Mitogen/metabolism , Small Molecule Libraries/metabolism
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