Total synthesis of milbemycin E: resolution of the C(1)–C(10) fragment and final assembly

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Patrick G. Steel, (the late) Owen S. Mills, Emma R. Parmee and Eric J. Thomas


Abstract

The racemic hydroxycyclohexanone (±)-7, prepared by the Robinson addition of the keto ester 5 to 3-methylbut-3-enone 6, has been reduced stereoselectively to give the racemic cyclohexanediol (±)-8. This has been resolved by fractional crystallisation of the acetylmandelate esters 10 and 11. With (S)-acetyl mandelic acid 9, diastereoisomer 11 crystallises out. The required, dextrorotatory, enantiomer of the cyclohexanediol (±)-8 has been obtained by selective saponification of the mixture of the diastereoisomers 10 and 11, to give the mandelates 12 and 13, followed by crystallisation of the required diastereoisomer 12. Saponification of 12 gives the dextrorotatory enantiomer of the cyclohexanediol (+)-8 [which could alternatively have been obtained directly from the racemic diol (±)-8 using (R)-acetylmandelate ent-9]. Oxidation of the dextrorotatory diol (+)-8 gives the laevorotatory hydroxy ketone (-)-7. The 3,4-double bond has been introduced into this ketone by regioselective enol trimethylsilyl ether formation, phenylselanation and oxidative elimination, followed by reduction to give the cyclohexenediol 18. Methylation, saponification and re-esterification give the 2-furylcyclohexenoate 23, which on oxidation using singlet oxygen is converted into the hydroxybutenolide 3. The dextrorotatory diol (+)-8 has also been converted into the hydroxybutenolide 29 which lacks the 3,4-double bond. Conditions have been developed for the Wittig reactions between the hydroxybutenolides 29 and 3 and the phosphonium salt 2 to give the esters 32 and 37 after esterification using diazomethane and iodine induced isomerisation of the 10,11-double bond. Deprotection gives the hydroxy acids 33 and 39 which have been cyclised to give the macrolides 34 and 40. Selective reduction of these methyl esters gives 3,4-dihydromilbemycin E 35 and milbemycin E 1.


References

  1. M. J. Hughes and E. J. Thomas, J. Chem. Soc., Perkin Trans. 1, 1993, 1493 RSC; M. J. Hughes, E. J. Thomas, M. D. Turnbull, R. H. Jones and R. W. Warner, J. Chem. Soc., Chem. Commun., 1985, 755 RSC.
  2. P. G. Steel and E. J. Thomas, J. Chem. Soc., Perkin Trans. 1, 1997, 371 RSC; E. Merifield, P. G. Steel and E. J. Thomas, J. Chem. Soc., Chem. Commun., 1987, 1826 RSC.
  3. E. R. Parmee, S. V. Mortlock, N. A. Stacey, E. J. Thomas and O. S. Mills, J. Chem. Soc., Perkin Trans. 1, 1997, 381 RSC preceding paper in this issue S. V. Mortlock, N. A. Stacey and E. J. Thomas, J. Chem. Soc., Chem. Commun., 1987, 880 Search PubMed.
  4. Preliminary communication: E. R. Parmee, P. G. Steel and E. J. Thomas, J. Chem. Soc., Chem. Commun., 1989, 1250 Search PubMed.
  5. A. K. Saksena and P. Mangiaracina, Tetrahedron Lett., 1983, 24, 273 CrossRef CAS; M. D. Turnbull, G. Hatter and D. E. Ledgerwood, Tetrahedron Lett., 1984, 25, 5449 CrossRef CAS.
  6. J. K. Whitesell and D. Reynolds, J. Org. Chem., 1983, 48, 3548 CrossRef CAS; E. G. Breitholle and C. H. Stammer, J. Org. Chem., 1974, 39, 1311 CrossRef CAS.
  7. J. A. Dale and H. S. Mosher, J. Am. Chem. Soc., 1973, 95, 512 CrossRef CAS; B. M. Trost, J. L. Belletire, S. Godleski, P. G. McDougal and J. M. Balkovec, J. Org. Chem., 1986, 51, 2370 CrossRef CAS.
  8. A. J. Mancuso, S. L. Huang and D. Swern, J. Org. Chem., 1978, 43, 2480 CrossRef CAS.
  9. S. Katsumura, K. Hori, S. Fugiwara and S. Isoe, Tetrahedron Lett., 1985, 26, 4626.
  10. W. Adam and A. Rodriguez, Tetrahedron Lett., 1981, 22, 3505 CrossRef CAS.
  11. E. J. Corey and A. Venkateswarlu, J. Am. Chem. Soc., 1972, 94, 6190 CrossRef CAS.
  12. S. Hanessian, A. Ugolini, D. Dube, P. J. Hodges and C. Andre, J. Am. Chem. Soc., 1986, 108, 2776 CrossRef CAS; S. Hanessian, A. Ugolini, P. J. Hodges, P. Beaulieu, D. Dube and C. Andre, Pure Appl. Chem., 1987, 59, 299 CrossRef CAS.
  13. S. Bailey, A. Teerawutgulrag and E. J. Thomas, J. Chem. Soc., Chem. Commun., 1995, 2519; 2521 RSC.
  14. H. Mishima, J. Ide, S. Muramatsu and M. Ono, J. Antibiot., 1983, 36, 980 CAS.
  15. M. Smallridge, E. Menager and E. J. Thomas, unpublished observations.
  16. P. Main, S. J. Fiske, S. E. Hull, L. Lessinger, G. Germain, J.-P. Declerq and M. M. Woolfson, MULTAN80, A System of Computer Programs for the Automatic Solution of Crystal Structures from X-Ray Data, Universities of York, UK and Louvain, Belgium, 1980.
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