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  • Organic Chemistry  (3)
  • 1985-1989  (3)
  • 1930-1934
  • 1987  (3)
  • 1
    ISSN: 0018-019X
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Chiral Alkoxytitanium(iv) Complexes for Enantioselective Nucleophilic Additions to Aldehydes and as Lewis Acids in Diels-Alder ReactionsA Number of chiral 1,2-1,3 and 1,4-diols were prepared and used as alkoxy ligands on Ti for enantioselective nucleophilic transfer of methyl, butyl, cyclopropyl, allyl, alkinyl, and phenyl groups to aromatic aldehydes, as well as for the enantioselective[4+2]cycloaddition of acrylate to cyclopentadiene. The 1,2-diols were pinane diol 7 and 1,2:5.6-diacetonide-protected mannitol 9 (Scheme 3) and tartrates. The 1,3-diols were obtained from the yeast-reduction products of 2-oxocyclopentane- and 2-oxocyclohexanecarboxylates and excess MeLi, BuLi, or PhLi (or the corresponding Grignard reagents; see4-6.) As 1,4-diols, we used the products 2 and 3 from tartrate acetals and methyl or Pheny1 Grignard reagents, the bis(benzaldehyde) acetal 8 of d-mannitol and o,o'-binaphthol (22). These diols were attached to the Ti-atom by azeotropic removal of i-PrOH from a mixture with [TiCi(i-PrO)3]. Addition of various organometallic reagents R-metal (metal = Li, BR3, MgX, MnC1, CuLiR) was followed by combination with aldehydes at - 75., a warm up period, quenching with aqueous KF solution, and workup (for results see Tables 1-6 and Formulae 17-20). The enantiomeric excess of the secondary alcohols obtained varies greatly, certain combinations of chiral ligands, nucleophilic groups, and aldehyde substrates give rise to values as high as 90% ee; see e.g. Table 4. The Ti-complexes of the general formula [Ti(R*O)2Ci2] or [Ti(R*O)2(i-PrO)CI] induced the Diels-Alder addition of methyl acrylate to cyclopentadience to take place at -30.. The best enantioselectivity (50% ee) was observed with the binaphthol derivative (Table 7). The structures of the complexes involved in these reactions are unknown. The substitution on C(2) of the dioxolanes 2 and 3 (derived from tartaric acid) has a pronounced effect on the selectivities of both reactions studied here (Tables 2, 3, and 7). This remote effect (1,6-distance between the stereogenic acetal-C-atom and the Ti-centers) must be caused by conformational changes in the vicinity of the reactive site, i.e. the Ti—C bond in the nucleophilic addition reactions and the Ti-acrylate-oxygen complexation in the Diels-Alder reaction.
    Additional Material: 7 Tab.
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  • 2
    ISSN: 0018-019X
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Gloeosporone, the germination self-inhibitor from the fungus Colletotrichum gloeosporioides f.sp. jussiaea, is shown by spectroscopic data and X-ray analysis to have the constitution and relative configuration as shown in Formula 2 (either (1S,6R,12R)-1-hydroxy-6-pentyl-5,15-dioxabicyclo[10.2.1]pentadecan-4,13-dione or its enantiomer), rather than the previously assigned constitution 1.
    Additional Material: 3 Ill.
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  • 3
    ISSN: 0170-2041
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Synthesis of a Biologically Active Analogue of Prostaglandin E2 (Racemate and Enantiomerically Pure Compounds)Transformation of 6-chloro-3-oxo-2-oxabicyclo[3.2.1]octane-8-carbaldehyde (6) by an eight-step synthesis leads to racemic (5Z,13E)-11,15-dihydroxy-16,16-dimethyl-9-oxo-18-oxa-5,13-prostadienoic acid (1) (dimoxaprost). The synthesis starts with the introduction of the ω-side chain of 1 into 6 by Horner-Emmons-Wittig reaction with the phosphonate 7. Ring cleavage and rearrangement of 8 affords enone 9a with unprotected hydroxyl group. By stereoselective reduction of 9a, diol 11a is obtained. Subsequently, 11a is converted in five steps through the “Corey synthesis” into 1. The 5-ketoprostacyclin 17 is isolated as a by-product of the Jones oxidation of 15. Finally, the synthesis of optically pure (-)-1 and (+)-1, starting with the keto acids (+)-2 and (-)-2, is described.
    Notes: Ausgehend von 6-Chlor-3-oxo-2-oxabicyclo[3.2.1]octan-8-carbaldehyd (6) wird in einer 8stufigen Synthese racemische (5Z,13E)-11,15-Dihydroxy-16,16-dimethyl-9-oxo-18-oxa-5,13-prostadiensäure (1) (Dimoxaprost) dargestellt. Im ersten Reaktionsschritt wird dazu die ω-Seitenkette von 1 mit Hilfe der Horner-Emmons-Wittig-Reaktion und dem Phosphonat 7 in 6 eingeführt. Ringöffnung und Umlagerung von 8 führt zu dem Enon 9a mit freier Hydroxylgruppe. Dessen stereospezifische Reduktion ergibt das Diol 11a, welches analog der Corey-Synthese in fünf weiteren Reaktionsschritten in 1 übergeführt wird. Das 5-Ketoprostacyclin 17 wird dabei als Nebenprodukt isoliert. Die Synthese der beiden optischen Antipoden (-)-1 und (+)-1 wird in entsprechender Weise ausgehend von den Ketosäuren (+)-2 bzw. (-)-2 durchgeführt.
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