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1.
J Am Chem Soc ; 146(2): 1269-1275, 2024 Jan 17.
Article in English | MEDLINE | ID: mdl-38176098

ABSTRACT

Cracking the selectivity-generality paradox is among the most pressing challenges in asymmetric catalysis. This obstacle prevents the immediate and successful translation of new methods to diverse small molecules. This is particularly rate-limiting for therapeutic development, where availability and structural diversity are often critical components of successful campaigns. Here we describe the union of generality-driven enantioselective catalysis and the preparation of diverse peptidomimetics. A single new organocatalyst provides high selectivity and substrate generality that is matched only by a combination of metal and organocatalysts. Within organocatalysis, this discovery breaks a 16-year monolithic paradigm, uncovering a powerful new scaffold for enantioselective reduction with behavior that suggests the recognition of a nitroethylene minimal catalaphile.

2.
Chem Sci ; 13(32): 9220-9224, 2022 Aug 17.
Article in English | MEDLINE | ID: mdl-36093000

ABSTRACT

We report computationally-guided protein engineering of monomeric streptavidin Rh(iii) artificial metalloenzyme to enhance catalysis of the enantioselective coupling of acrylamide hydroxamate esters and styrenes. Increased TON correlates with calculated distances between the Rh(iii) metal and surrounding residues, underscoring an artificial metalloenzyme's propensity for additional control in metal-catalyzed transformations by through-space interactions.

3.
Tetrahedron Lett ; 61(23)2020 Jun 04.
Article in English | MEDLINE | ID: mdl-32528190

ABSTRACT

In recent work, asymmetric conjugate addition reactions to chiral 4-phenyl-N-enoyl-1,3-oxazolidinones have been shown to give different stereochemical outcomes depending on the conditions employed. Through the application of stereodivergent reaction conditions, the total synthesis of (+)-pilosinine and the formal synthesis of (-)-pilosinine has been completed from a single enantiomer of the 1,3-oxazolidi-none auxiliary.

4.
J Am Chem Soc ; 141(12): 4815-4819, 2019 03 27.
Article in English | MEDLINE | ID: mdl-30865436

ABSTRACT

Reliable design of artificial metalloenzymes (ArMs) to access transformations not observed in nature remains a long-standing and important challenge. We report that a monomeric streptavidin (mSav) Rh(III) ArM permits asymmetric synthesis of α,ß-unsaturated-δ-lactams via a tandem C-H activation and [4+2] annulation reaction. These products are readily derivatized to enantioenriched piperidines, the most common N-heterocycle found in FDA approved pharmaceuticals. Desired δ-lactams are achieved in yields as high as 99% and enantiomeric excess of 97% under aqueous conditions at room temperature. Embedding a Rh cyclopentadienyl (Cp*) catalyst in the active site of mSav results in improved stereocontrol and a 7-fold enhancement in reactivity relative to the isolated biotinylated Rh(III) cofactor. In addition, mSav-Rh outperforms its well-established tetrameric forms, displaying 11-33 times more reactivity.


Subject(s)
Biomimetic Materials/chemistry , Lactams/chemical synthesis , Metalloproteins/metabolism , Streptavidin/chemistry , Chemistry Techniques, Synthetic , Lactams/chemistry , Metalloproteins/chemistry , Models, Molecular , Protein Conformation
5.
J Am Chem Soc ; 140(6): 1998-2001, 2018 02 14.
Article in English | MEDLINE | ID: mdl-29400455

ABSTRACT

The enantioselective desymmetrization of carboxylic acids by chiral Brønsted base catalysis is reported, leading to bridged bicyclic lactones with up to 94% ee. Crystallographic analysis of a substrate-catalyst complex suggests an origin of stereocontrol, reminiscent of functional Brønsted bases in biological settings, and enabled reaction optimization. The products contain an all-carbon quaternary stereocenter and can be derivatized to functionalized cyclopentanes.


Subject(s)
Bridged Bicyclo Compounds/chemical synthesis , Carboxylic Acids/chemistry , Lactones/chemical synthesis , Biomimetics , Bridged Bicyclo Compounds/chemistry , Carboxylic Acids/chemical synthesis , Catalysis , Crystallography, X-Ray , Cyclopentanes/chemical synthesis , Cyclopentanes/chemistry , Lactones/chemistry , Models, Molecular , Stereoisomerism
6.
Org Lett ; 17(15): 3806-9, 2015 Aug 07.
Article in English | MEDLINE | ID: mdl-26186041

ABSTRACT

An operationally straightforward and metal-free inter-/intramolecular oxidative diamination of vinyl aminopyridines is a common gateway to access all four azaindoline heterocycle families. 3-Amino azaindolines are formed by the reaction of ortho-vinyl N-tosyl anilines with electron-rich amines using phenyliododiaceate (PIDA) and an iodide additive.

7.
Org Lett ; 17(10): 2558-61, 2015 May 15.
Article in English | MEDLINE | ID: mdl-25942322

ABSTRACT

Doubly intermolecular alkene diamination is achieved with electron-rich, terminal alkenes through the use of a hypervalent iodine (PhI(OAc)2) reagent, iodide, and electron-rich amines. Mono- and disubstituted amines combine with electron-rich alkenes, particularly o-hydroxystyrenes, to achieve the greatest level of generality. This operationally straightforward protocol, unreliant on conventional metal-based activation, is compatible with a broad range of functional groups.

8.
J Org Chem ; 79(15): 6913-38, 2014 Aug 01.
Article in English | MEDLINE | ID: mdl-25017623

ABSTRACT

The finding by scientists at Hoffmann-La Roche that cis-imidazolines could disrupt the protein-protein interaction between p53 and MDM2, thereby inducing apoptosis in cancer cells, raised considerable interest in this scaffold over the past decade. Initial routes to these small molecules (i.e., Nutlin-3) provided only the racemic form, with enantiomers being enriched by chromatographic separation using high-pressure liquid chromatography (HPLC) and a chiral stationary phase. Reported here is the first application of an enantioselective aza-Henry approach to nonsymmetric cis-stilbene diamines and cis-imidazolines. Two novel mono(amidine) organocatalysts (MAM) were discovered to provide high levels of enantioselection (>95% ee) across a broad range of substrate combinations. Furthermore, the versatility of the aza-Henry strategy for preparing nonsymmetric cis-imidazolines is illustrated by a comparison of the roles of aryl nitromethane and aryl aldimine in the key step, which revealed unique substrate electronic effects providing direction for aza-Henry substrate-catalyst matching. This method was used to prepare highly substituted cis-4,5-diaryl imidazolines that project unique aromatic rings, and these were evaluated for MDM2-p53 inhibition in a fluorescence polarization assay. The diversification of access to cis-stilbene diamine-derived imidazolines provided by this platform should streamline their further development as chemical tools for disrupting protein-protein interactions.


Subject(s)
Amidines/chemistry , Diamines/chemistry , Imidazolines/chemistry , Stilbenes/chemistry , Apoptosis , Catalysis , Cell Line, Tumor , Chromatography, High Pressure Liquid , Fluorescence Polarization , Humans , Molecular Structure , Organic Chemistry Phenomena , Protein Interaction Domains and Motifs , Stereoisomerism
9.
Chem Commun (Camb) ; 48(45): 5578-80, 2012 Jun 07.
Article in English | MEDLINE | ID: mdl-22543734

ABSTRACT

The first enantioselective synthesis of a potent GlyT1 inhibitor is described. A 3-nitroazetidine donor is used in an enantioselective aza-Henry reaction catalyzed by a bis(amidine)-triflic acid salt organocatalyst, delivering the key intermediate with 92% ee. This adduct is reductively denitrated and converted to the target through a short sequence, thereby allowing assignment of the absolute configuration of the more potent enantiomer.


Subject(s)
Alkanes/chemistry , Azo Compounds/chemistry , Glycine Plasma Membrane Transport Proteins/antagonists & inhibitors , Nitro Compounds/chemistry , Thiosemicarbazones/chemistry , Alkanes/chemical synthesis , Azo Compounds/chemical synthesis , Catalysis , Humans , Nitro Compounds/chemical synthesis , Protons , Stereoisomerism , Thiosemicarbazones/chemical synthesis
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