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1.
Asymmetric total synthesis of polyhydroxylated naturally occurring nonenolide seimatopolide A (3S,6S,7S,9R) and seimatopolide B (3S,6R,9R) is described in this article. An E-selective cross metathesis (CM) reaction between two suitable fragments followed by macrolactonization reaction is the main highlight of our synthesis for the two natural products. The fragment containing 6S,7S,9R stereocenters for seimatopolide A has been synthesized from l-tartaric acid as a chiral pool starting material, by employing (R)-CBS-mediated stereoselective keto reduction reaction. Another fragment, which is common for both the molecules, containing the 3S stereocenter was prepared by ME-DKR (metal enzyme combined dynamic kinetic resolution) method. The fragment having 6R,9R stereocenters for seimatopolide B has been prepared from n-decanal by adopting (R)-CBS-mediated keto reduction and Brown asymmetric allylation reaction.  相似文献   

2.
First asymmetric synthesis of (−)-chicanine has been accomplished in 14 steps by employing the Evans asymmetric syn-selective aldol reaction, diastereoselective hydroboration and an regioselective, intramolecular Mitsunobu etherification. The absolute configuration of (+)- and (−)-chicanine has been revised to 2R,3S,4R,5R and 2S,3R,4S,5S, respectively, through CD analysis.  相似文献   

3.
All of the four stereoisomers of (1′S)-1′-ethyl-2′-methylpropyl 3,13-dimethylpentadecanoate, the major component of the female sex pheromone of Clania variegata, were synthesized by employing olefin cross metathesis as the key reaction and starting from (R)- or (S)-2-methyl-1-butanol, (R)- or (S)-citronellal, and (S)-2-methyl-3-pentanol. Their bioassay revealed the (3R,13R,1′S)-isomer as the bioactive one, whose more efficient synthesis was achieved in two different ways by employing Wittig reaction as the key step.  相似文献   

4.
A highly stereoselective approach to the total synthesis of seimatopolide A and (2S,3R,5S)-(−)-2,3-dihydroxytetradecan-5-olide is described via a common polyketide precursor by means of Prins reaction and MacMillan aminoxylation sequence.  相似文献   

5.
The design and synthesis of conjugated semiconducting polymers for photocatalytic hydrogen evolution have engendered intense recent interest. However, most reported organic polymer photocatalysts show a relatively broad band gap with weak light absorption ability in the visible light region, which commonly leads to a low photocatalytic activity under visible light. Herein, we synthesize three novel dithieno[3,2-b:2′,3′-d]thiophene-S,S-dioxide (DTDO) containing conjugated polymer photocatalysts by a facile C–H arylation coupling polymerization reaction. The resulting polymers show a broad visible light absorption range up to 700 nm and a narrow band gap down to 1.81 eV due to the introduction of the DTDO unit. Benefiting from the donor–acceptor polymer structure and the high content of the DTDO unit, the three-dimensional polymer PyDTDO-3 without the addition of a Pt co-catalyst shows an attractive photocatalytic hydrogen evolution rate of 16.32 mmol h−1 g−1 under visible light irradiation, which is much higher than that of most reported organic polymer photocatalysts under visible light.

Narrow band gap conjugated polymer photocatalysts containing dithieno[3,2-b:2′,3′-d]thiophene-S,S-dioxide show an attractive photocatalytic hydrogen evolution rate of 16.32 mmol h−1 g−1 under visible light irradiation.  相似文献   

6.
The absolute stereochemistry of TT-1 (1=rasfonin), an α-pyrone-containing natural product from a Fungi Imperfecti, Trichurus terrophilus, was determined as 5R,6R,7S,9R, and 6′S on the basis of synthesis of diastereomers of two fragments of 1 in optically active forms, and comparison of their spectral and optical data with those of natural specimens.  相似文献   

7.
《Tetrahedron: Asymmetry》2007,18(16):1955-1963
The synthesis of (5R,2′S,5′S,6′S)-ribosyl-diazepanone, an analogue core of liposidomycins is described. The core ribosyl seven-membered heterocycle of nucleoside antibiotic liposidomycins was formed by reductive amination of an α-ribosylamino ester derived from d-ribose, and an amino aldehyde derived from methyl 4-triisopropylsilyloxy-3-oxobutanoate, followed by a peptidic coupling reaction.  相似文献   

8.
The synthesis is described of the two enantiomerically pure isomers (+)-(3S,7S,10S)- and (+)-(3S,7S,10R)-3,7,10-trimethylboratr The structures were determined by 1H- and 13C-NMR spectroscopy. A method for increasing the enantiomeric purity by trimerization reactions of partially-resolved (S) propylene oxide is proposed. The reaction was studied from the kinetic viewpoint and interpreted according to a binomial probability scheme. The experimental findings point to a rapid growth in enantiomeric purity for the (SSS) trimer compared with the starting material, whilst no increase was found for the (SSR) trimer.  相似文献   

9.
A simple and efficient synthetic route to the bicyclic α,β-unsaturated β-keto ester methyl (3aS,7aS)-6-oxo-2,3,3a,6,7,7a-hexahydro-1H-indene-5-carboxylate, a versatile intermediate in the synthesis of biologically active unsaturated 1,4-dialdehydes, is described. The synthesis includes a chirality introducing nonenzymatic asymmetric desymmetrization (ADS) reaction of a cyclic meso-anhydride 4 and a modified Hofmann method for preparing exocyclic dienes. The ester was synthesized in a moderate overall yield (19%) from 6 and with an excellent enantioselectivity (>90%).  相似文献   

10.
Lee HY  Yoon M  Marsh EN 《Tetrahedron》2007,63(22):4663-4668
Kinetic isotope effects provide a powerful method to investigate the mechanisms of enzyme-catalyzed reactions, but often other slow steps in the reaction such as substrate binding or product release suppress the isotopically sensitive step. For reactions at methyl groups, this limitation may be overcomed by measuring the isotope effect by an intra-molecular competition experiment. This requires the synthesis of substrates containing regio-specifically mono- or di-deuterated methyl groups. To facilitate the mechanistic investigations of the adenosylcobalamin-dependent enzyme, glutamate mutase, we have developed a synthesis of mono- and di-deuterated (2S,3S)-3-methylaspartic acids. Key intermediates are the correspondingly labeled mesaconic acids and their dimethyl esters that potentially provide starting materials for a variety of isotopically labeled molecules.  相似文献   

11.
A route has been developed which allows synthesis of novel cyclobutanone analogues of penicillin. This is illustrated by the synthesis of (1R,4R,5R,5′R,7S)-(1b) and (1S,4S,5S,5′R,7R)-7-[5′-amino-5′-carboxy]pentanamido]-2-thiabicyclo[3.2.0]heptan-6-one-4-carboxylate (1a), an analogue of penicillin N. The key steps in the synthesis were the formation of the bicyclic structure via a [2+2] cycloaddition and the introduction of nitrogen at C7 via an intramolecular nitrene insertion.  相似文献   

12.
Efficient epoxidation of chiral cinnamic acid derivatives has been achieved by in situ generated dioxiranes of chloroacetones with moderate to good diastereoselectivity (dr up to 90:10) in high yields. Reactivity of cinnamic acid derivatives containing different chiral auxiliaries versus chloroacetones–monochloroacetone 3 (MCA), 1,1-dichloroacetone 4 (DCA) and 1,1,1-trichloroacetone 5 (TCA) and Oxone? loading was studied. Both Oxone? loading and reaction time reduce with an increase of chlorine atoms in the acetone. The use of 1.1 equiv of TCA was found to be effective for the epoxidation of cinnamate substrates and enhances the reaction up to 4–10-fold compared to acetone and that also decreases the Oxone? loading. This method provided methyl (2R,3S)-3-(4-methoxyphenyl)glycidate (?)-2, a key intermediate for the synthesis of diltiazem hydrochloride, with >99% of enantiomeric purity.  相似文献   

13.
Starting from commercially available lactone 10, a concise and highly diastereoselective synthesis of (?)-(lS,2R,8aS)-2-epi-lentiginosine (2) is described. The synthesis featured an unexpected highly erythro-selective reaction of Grignard reagent 7 with the protected N,O-acetal 8. The stereochemical outcome of this reaction is contrary to the known results involving the reactions with O-benzyl protected aminofuranosides and aminoglycosides. Thus, this method constitutes an extension of the threo-diastereoselective C–C bond formation methodology.  相似文献   

14.
An efficient enantioselective synthesis of l-(−)-733,061 and (2S,3S)-methyl 3-aminopiperidine-2-carboxylate is accomplished by means of catalytic enantioselective aza-Henry reaction. A key feature of this protocol is organocatalysis as genesis of chirality to ensure high degree of distereo- and enantiocontrol.  相似文献   

15.
《Tetrahedron: Asymmetry》2000,11(18):3819-3825
A highly efficient synthesis of esomeprazole—the (S)-enantiomer of omeprazole—via asymmetric oxidation of prochiral sulphide 1 is described. The asymmetric oxidation was achieved by titanium-mediated oxidation with cumene hydroperoxide (CHP) in the presence of (S,S)-diethyl tartrate [(S,S)-DET]. The enantioselectivity was provided by preparing the titanium complex in the presence of 1 at an elevated temperature and/or during a prolonged preparation time and by performing the oxidation of 1 in the presence of an amine. An enantioselectivity of >94% ee was obtained using this method.  相似文献   

16.
The total synthesis of (+)-(6R,2′S)-cryptocaryalactone and (?)-(6S,2′S)-epi cryptocaryalactone is reported based on asymmetric acetate aldol reaction. Still–Gennari reaction, Evans acetal intramolecular oxa-Michael reaction and lactonisation are the key steps in the target synthesis.  相似文献   

17.
Andrew M. Harned 《Tetrahedron》2018,74(28):3797-3841
In 1973, Horeau and co-workers reported a technique capable of upgrading the enantiopurity of a scalemic mixture (for example, [(R)-enantiomer]?>?[(S)-enantiomer]). This method involved coupling the compound of interest to a simple, bifunctional reagent in order to form a statistical mixture of (R,R)-, (S,S)-, and (R,S)-stereoisomers. Separation of the two diastereomers and cleavage of the incorporated coupling agent effectively removes the minor, (S)-enantiomer from the major, (R)-enantiomer; thereby increasing the enantiopurity of the starting compound. Since that time, this concept of removing a minor enantiomer through the statistical formation of diastereomeric compounds (the Horeau principle) has also been applied when sequential enantioselective reactions are performed on a substrate, when multiple enantioenriched fragments are coupled together, and for determining the enantiopurity of the initial scalemic mixture. Under the right circumstances, the Horeau principle can be deployed in an iterative fashion in order to access material with extremely high enantiopurity (>99.999% ee). This review provides comprehensive coverage of the underlying theory behind the Horeau principle and its application in organic synthesis.  相似文献   

18.
An asymmetric synthesis of (S)- and (R)-3-amino-4,4,4-trifluorobutanoic acid via DBU-catalyzed asymmetric 1,3-proton shift transfer reaction of (Z)-3-[(R)-1-phenylethylamino]-4,4,4-trifluoro-N-[(R)-1-phenylethyl]but-2-enamide has been developed. The intermediate Schiff base (S,R′)-9 was found to be relatively configurationally stable under the highly basic reaction conditions allowing preparation of the target amino acid in high chemical yield and enantioselectivity. This method was demonstrated to be practical for large (>25 g) scale synthesis of the target β-amino acid.  相似文献   

19.
Stereoselective synthesis of (5R,6R)- and (5S,6S)-5-benzylamino-6-(tert-butyldimethylsilanyloxymethyl)-5,6-dihydropyran-2-ones starting from d-glucal and furanaldehyde, respectively, is described. The synthesis relies on a Sharpless asymmetric dihydroxylation, an Achmatowicz reaction, and a stereoselective Pd-catalyzed allylic amination as the key steps.  相似文献   

20.
《Tetrahedron: Asymmetry》2001,12(5):691-693
Porcine pancreatic lipase was used in the chemoenzymatic hydrolysis of 2-azido-3-hydroxy-4-methylcarbonyloxybutyl acetate. The reaction occurred with high regio- and stereoselectivity to give enantiomerically pure (2S,3R)-3-azido-2,4-dihydroxy butyl acetate 5 (e.e. >99%) which was easily converted to (2S,3S)-2-amino-3,4-dihydroxybutyric acid 1, an important synthetic intermediate in the synthesis of β-lactam antibiotics and phytosiderophores.  相似文献   

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