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E J Corey

Publications and source records attributed to E J Corey.

At least 19 recordsLinked to original sources

Total synthesis of antheliolide A.

The first synthesis of the structurally unique marine natural product antheliolide A (1) has been accomplished by the pathway outlined in Scheme 1. The sequence is stereocontrolled and has led to the synthesis of (+/-)-1, and ent-1 as well as 1. The route contains a number of noteworthy or novel steps including (1) formation of the mixed acetal 7, (2) the diastereoselective bicyclization to form 8 in which stereocenters are correctly established at each carbon of the four-membered ring, (3) the chain extension 8 --> 11, (4) the efficient closure of the nine-membered ring of 12, (5) the mild oxidative cleavage sequence 14 --> 17, and (6) the successful and quick formation of the last three rings of 1 from aldehyde 17 via 18. The synthesis of 1 has also resulted in the clarification of its absolute configuration, which had not been determined previously.

Chromatography, High Pressure Liquid↗

A general process for the haloamidation of olefins. Scope and mechanism.

A methodology is described for the addition of a bromine atom and an amide nitrogen in a trans sense to an olefinic double bond. The process, which is illustrated by numerous examples, involves the use of an N-bromoamide and a Lewis acid as a source of Br+ which reacts with the olefin. The amide group is derived from a nitrile and a water molecule which serve as nucleophiles for the overall three-component reaction. The bromoamidation is general for a broad range of olefins and nitriles. This reaction pathway provides access not only to vicinal bromoamides but also to N-acyl aziridines and oxazolines. From these, many types of amines and amino alcohols can be prepared. Examples are provided which delineate diastereo- and regioselectivity preferences. An analogous chloroamidation reaction is also described.

Journal Article↗

A short enantioselective pathway for the synthesis of the anti-influenza neuramidase inhibitor oseltamivir from 1,3-butadiene and acrylic acid.

A short synthetic pathway has been developed for the synthesis of oseltamivir (1) or the enantiomer (ent-1). The intermediates and conditions for this process are summarized in Scheme 1. The synthesis provides a number of advantages: (1) use of inexpensive and abundant starting materials; (2) complete enantio-, regio-, and diastereocontrol; (3) avoidance of explosive, azide-type intermediates; (4) good overall yield (ca. 30%, still not completely optimized); and (5) scalability.

Acrylates↗

Novel bicyclization reaction leading to a fused beta-lactone.

[reaction: see text] The reaction of acrylyl chloride with the above amino ketone in the presence of pyridine produces bicyclic beta-lactones rather than the corresponding acrylamide, which can be the major product under other conditions.

Acrylamides↗

Enantioselective synthesis of pentacycloanammoxic acid.

A highly effective enantioselective synthesis of pentacycloanammoxic acid (1), an unusual naturally occurring fatty acid from Candidatus Brocadia anammoxidans, has been accomplished. The C20-structure of 1 was assembled with stereocontrol from four building blocks, cyclobutene, 2-cyclopentenone, the chiral silylcyclopentenone 6, and 7-bromoheptanoic acid. Both 1 and its enantiomer are now available in quantities that should facilitate future studies on the mode of biosynthesis which appears to be unprecedented.

Bacteria, Anaerobic↗

Enantioselective syntheses of georgyone, arborone, and structural relatives. Relevance to the molecular-level understanding of olfaction.

Georgyone (1) and arborone (2), powerful woody odorants, have been synthesized enantioselectively along with their enantiomers. Several structural relatives of 1 and 2 have also been made enantioselectivity in order to probe the molecular details of the binding of 1 and 2 to the olfactory G-protein-coupled receptors which they activate. These studies have led to a number of conclusions regarding the structural requirements for woody odor, including absolute configuration, critical methyl substitution, and the spatial orientation of the key methyl groups. Odorants 1 and 2 bind to at least 10 mouse olfactory receptors, lending support to the combinatorial model for odor perception/differentiation. The implications of this work with regard to possible receptor binding modes are discussed.

Animals↗

Concise total syntheses of palominol, dolabellatrienone, beta-araneosene, and isoedunol via an enantioselective Diels-Alder macrobicyclization.

Concise total syntheses of four members of the dolabellane family of diterpenoid natural products are reported. Key features of the developed route include the first demonstration of an enantioselective, intramolecular Type I Diels-Alder macrobicyclization, the first example of a stereoselective pi-allyl Stille coupling reaction involving a farnesyl-derived intermediate, a powerful new reagent for the formation of dithianes with acid-sensitive molecules, and a unique and highly efficient ring-contraction sequence based on a modified Wolff photochemical rearrangement.

Benzopyrans↗

Theory-guided discovery of unique chemical transformations of cyclopropenes.

[reaction: see text] Chiral 2-cyclopropenyl-4-tolyl sulfones, available by the [2 + 1]-cycloaddition of tosyldiazomethane to acetylenes under catalysis by the Rh(II) complex 1, provide a number of unusual transformations and useful chiral products. This chemistry is dominated by the unusual strain and reactivity of the cyclopropene ring system.

Journal Article↗

Proteasome inhibition by a totally synthetic beta-lactam related to salinosporamide A and omuralide.

A new and effective proteasome inhibitor, beta-lactam 3, has been accessed enantioselectively by multistep synthesis from the readily prepared intermediates 7 and 8 which were joined by a [2 + 2]-cycloaddition reaction to form the spiro beta-lactam 9 stereoselectively. The intermediate 9 was converted to 3 in seven steps and 30% overall yield. The beta-lactam 3 is stable for many days in water at pH 7, in contrast to the natural beta-lactones salinosporamide A (1) and omuralide (2). In common with 1 and 2, the beta-lactam 3 effectively inhibits the mammalian proteasome.

Drug Stability↗

Catalysis of enantioselective [2+1]-cycloaddition reactions of ethyl diazoacetate and terminal acetylenes using mixed-ligand complexes of the series Rh2(RCO2)n(L*4-n). Stereochemical heuristics for ligand exchange and catalyst synthesis.

This paper describes the synthesis of mixed Rh(2)(II) complexes containing bridging acetate and R,R-diphenyl-N-triflylimidazolidinone (DPTI) ligands (1, 2, and 9-19), and their function as enantioselective catalysts for the conversion of ethyl diazoacetate and terminal acetylenes to chiral cyclopropenes. Of these catalysts, 1 and 10 functioned with the highest enantioselectivity, in accord with a mechanistic model in which one of the ligand bridges is broken in the intermediate Rh-carbene complex. The synthetic results allow conclusions with regard to kinetically and thermodynamically favored pathways for the synthesis of mixed acetate-DPTI complexes. A new C(2)-symmetric complex having only two anti-DTBTI bridges (23) is shown to be a highly effective chiral catalyst, as expected from the model.

Acetates↗

Enantioselective total synthesis of isoedunol and beta-araneosene featuring unconventional strategy and methodology.

A new synthetic strategy for the enantioselective synthesis of members of the dolabellane family of marine natural products has been demonstrated for the specific examples beta-araneosene and isoedunol (1 and 2, respectively) by the pathway outlined in Scheme 1. Key steps include (1) diastereoselective alkylation of Seebach's chiral lactate acetal (6) by the iodide derived from 5; (2) Kulinkovich ethylenation of ester 9 to form the cyclopropanol 10; (3) ring expansion of 10 to form 11; (4) pinacol cyclization of keto aldehyde 12 to form 13a; (5) rearrangement of 13b to 14; (6) propenylation of 14 to 2; and (7) reductive pi-transposition to form 1.

Animals↗

Short, enantioselective total synthesis of aflatoxin B2 using an asymmetric [3+2]-cycloaddition step.

A highly enantioselective [3+2]-cycloaddition reaction of 2,3-dihydrofuran with 1,4-benzoquinones using a chiral oxazaborolidinium triflimidate as catalyst has been developed which allows rapid access to a variety of chiral phenolic tricycles (enantiomeric excesses ranging from 91 to 98%). The utility of this new methodology is demonstrated by a short synthesis of the important pentacyclic natural product, aflatoxin B2. This exploratory study indicates that an even broader application of these catalysts to enantioselective cycloadditions may be possible.

Aflatoxins↗