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Trans-Hydroxylation synthesis

This type of reaction is useful in chiral synthesis for the final sugar is deoxygenated at three positions, but the presence of a double bond in 7.58 allows the possibility of introducing cis or trans hydroxyl groups at C-3 and C-4 of the carbon atoms. [Pg.68]

The acid components required for the synthesis of the ester alkaloids, (+)-trachelanthic and viridifloric acids, were synthesised by stereospecific routes, since the relative stereochemistry of the asymmetric centres in these acids was still uncertain. Eventually they were obtained by appropriate stereospecific icis or trans) hydroxylation of trans-2-isopropylcrotonic acid (34), and its cis-isomer obtained by photochemical isomerisation. After resolution, (+)-trachelanthic acid was identified as the t/irco-2-isopropyl-2,3-dihydroxybutyric acid (35) the corresponding erythro-isomet was identified as viridifloric acid. [Pg.66]

The synthesis of key intermediate 12, in optically active form, commences with the resolution of racemic trans-2,3-epoxybutyric acid (27), a substance readily obtained by epoxidation of crotonic acid (26) (see Scheme 5). Treatment of racemic 27 with enantio-merically pure (S)-(-)-1 -a-napthylethylamine affords a 1 1 mixture of diastereomeric ammonium salts which can be resolved by recrystallization from absolute ethanol. Acidification of the resolved diastereomeric ammonium salts with methanesulfonic acid and extraction furnishes both epoxy acid enantiomers in eantiomerically pure form. Because the optical rotation and absolute configuration of one of the antipodes was known, the identity of enantiomerically pure epoxy acid, (+)-27, with the absolute configuration required for a synthesis of erythronolide B, could be confirmed. Sequential treatment of (+)-27 with ethyl chloroformate, excess sodium boro-hydride, and 2-methoxypropene with a trace of phosphorous oxychloride affords protected intermediate 28 in an overall yield of 76%. The action of ethyl chloroformate on carboxylic acid (+)-27 affords a mixed carbonic anhydride which is subsequently reduced by sodium borohydride to a primary alcohol. Protection of the primary hydroxyl group in the form of a mixed ketal is achieved easily with 2-methoxypropene and a catalytic amount of phosphorous oxychloride. [Pg.176]

This synthetic sequence for an olefin synthesis has been further developed by Kocienski who has shown that eliminative desulphonylations carried out on / -acyloxysulphones are remarkably stereoselective for the synthesis of trans-disubstituted-olefins. The method has wide applicability in that a-lithio phenyl sulphones are readily generated, and are readily coupled to aldehydes or ketones, to give j8-hydroxysulphones. The hydroxyl function of these is then esterified and the synthesis is completed by the reductive elimination with sodium amalgam. Kocienski has prepared two reviews that summarize his syntheses of a range of natural products - one of which is diumycinoP obtained... [Pg.948]

The same corynoline analog (214) was obtained more conveniently through photolysis in the presence of nitrosobenzene. Addition of nitrosobenzene to 208 from the opposite side of the methyl group resulted in the B/C-trans adduct 215. Reduction of 215 with sodium borohydride followed by acidic treatment gave the B/C-cis product 217 via 216. Hydroxylation of 217 with performic acid and hydrogenolysis of the diol 218 completed the synthesis of 214 (126). [Pg.172]

Rearrangement of spirobenzylisoquinolines, having a hydroxyl group on ring C trans to the nitrogen, to indenobenzazepines was first reported by Irie et al. (209,210) in their synthesis of rhoeadine alkaloids (Section V,G,1). This... [Pg.205]

The concept for the synthesis of4-hydroxy-4,5-dihydroisoxazoles by Righi and coworkers was discussed earlier, in Chapter 7. Here, an extension of this methodology by utilizing polymer-bound nitroacetate (hydroxylated Merrifield resin) is described [10], Thus, the one-pot domino oxidation/nitroaldol cyclization of aziridine 10-28 with immobilized nitroacetate 10-29 furnished 10-30 which, after detachment from the resin, led to the desired product 10-31 in good yield and excellent trans-selectivity (Scheme 10.7). [Pg.570]

Synthesis of 2,3-butanediol enantiomers syn-hydroxylation of trans-2-butene. Retrosvnthetic Analysis... [Pg.354]

In the case of the synthesis of cortisone, Oppenhauer oxidation of hydroxyl group at C(14) -after the necessary acetalisation of the unsaturated carbonyl group-leads to intermediate 16a. which, under the basic conditions of Oppenhauer oxidation, spontaneously isomerises to 17a. with the more stable trans-BIC junction. An additional advantage of this sequence is that the carbonyl group activates the C(13) vicinal position, and allows not only the introduction of the methyl group, but facilitates the construction of ring D of the cortisone molecule. [Pg.21]


See other pages where Trans-Hydroxylation synthesis is mentioned: [Pg.7]    [Pg.43]    [Pg.114]    [Pg.237]    [Pg.159]    [Pg.85]    [Pg.6]    [Pg.424]    [Pg.12]    [Pg.176]    [Pg.66]    [Pg.70]    [Pg.259]    [Pg.352]    [Pg.435]    [Pg.436]    [Pg.506]    [Pg.555]    [Pg.569]    [Pg.646]    [Pg.140]    [Pg.948]    [Pg.287]    [Pg.649]    [Pg.276]    [Pg.121]    [Pg.15]    [Pg.178]    [Pg.185]    [Pg.24]    [Pg.42]    [Pg.145]    [Pg.30]    [Pg.248]    [Pg.19]    [Pg.123]    [Pg.146]    [Pg.140]    [Pg.284]    [Pg.238]    [Pg.200]    [Pg.202]   
See also in sourсe #XX -- [ Pg.16 , Pg.695 ]




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Trans synthesis

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