| Literature DB >> 23209519 |
Jolanta Wierzejska1, Shin-Ichi Motogoe, Yuto Makino, Tetsuya Sengoku, Masaki Takahashi, Hidemi Yoda.
Abstract
A new synthetic approach to (+)-batzellaside B from naturally abundant L-pyroglutamic acid is presented in this article. The key synthetic step involves Sharpless asymmetric dihydroxylation of an olefinic substrate functionalized with an acetoxy group to introduce two chiral centres diastereoselectively into the structure. Heterocyclic hemiaminal 4, which could be converted from the resulting product, was found to provide stereospecific access to enantiomerically enriched allylated intermediate, offering better prospects for the total synthesis of this natural product.Entities:
Keywords: (+)-batzellaside B; L-pyroglutamic acid; asymmetric dihydroxylation; iminosugar; total synthesis
Year: 2012 PMID: 23209519 PMCID: PMC3511019 DOI: 10.3762/bjoc.8.210
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Examples of naturally occurring iminosugars.
Figure 2The chemical structures of (+)-batzellasides A–C (1a–c).
Scheme 1Our previous approach to (+)-batzellaside B and retrosynthetic analysis for the new synthetic strategy.
Scheme 2Reagents and conditions: (a) see [22]; (b) MeONa, MeOH, rt; 98%; (c) (i) p-TsOH, MeOH, rt; (ii) BF3·Et2O, 2,2-DMP, acetone, rt; 93% (two steps); (d) (i) LDA, HMPA, PhSeBr, THF, −78 °C; (ii) m-CPBA, CH2Cl2, −40 °C; 90% (two steps); (e) DIBAL-H, THF, 0 °C; 95%; (f) OsO4, NMO, t-BuOH/H2O (1/1), rt; 30%, 12a-A/12a-B = 24/76; (g) (i) TBSCl, Et3N, CH2Cl2, rt; (ii) BnBr, NaH, Bu4NI, THF, rt; (h) (i) p-TsOH, MeOH, rt; (ii) TFA, CH2Cl2, rt; (i) (i) NaIO4, Et2O/H2O (1/1), rt; (ii) PCC, MS 4 Å, CH2Cl2, rt; 17% (six steps); (j) TBSCl, imidazole, DMF; 77% (6b); or MOMCl, NaH, THF; 68% (6c); or Ac2O, DMAP, Et3N, CH2Cl2; 99% (6d).
Asymmetric dihydroxylation of 6a–d.
| Entry | R | Reagent (amount [mol %]) | Yield [%]a ( | ||
| 1 | H | AD-mix-α (0.5), MeSO2NH2 (100) | rt | 32 (45/55) | |
| 2 | H | AD-mix-β (0.5), MeSO2NH2 (100) | rt | 77 (13/87) | |
| 3 | TBS | AD-mix-α (0.5), MeSO2NH2 (100) | rt | 33 (14/86) | |
| 4 | TBS | AD-mix-β (0.5), MeSO2NH2 (100) | rt | 35 (40/60) | |
| 5 | MOM | AD-mix-α (0.5), MeSO2NH2 (100) | rt | 52 (50/50) | |
| 6 | MOM | AD-mix-β (0.5), MeSO2NH2 (100) | rt | 88 (0/100) | |
| 7 | Ac | AD-mix-α (0.5), MeSO2NH2 (100) | rt | 48 (69/31) | |
| 8 | Ac | AD-mix-β (0.5), MeSO2NH2 (100) | rt | 51 (9/91) | |
| 9 | Ac | AD-mix-α (0.5), MeSO2NH2 (100) | 0 °C | 54 (78/22) | |
| 10 | Ac | AD-mix-α (0.5) | 0 °C | 52 (84/16) | |
| 11 | Ac | AD-mix-α (0.5), (DHQ)2PHAL (10) | 0 °C | 53 (83/17) | |
aIsolated yield. bDiastereomeric ratios were determined by 1H NMR (300 MHz).
Scheme 3Reagents and conditions: (a) (i) K2CO3, MeOH, rt; (ii) TBSCl, Et3N, CH2Cl2, rt; (iii) BnBr, NaH, Bu4NI, THF, rt; 50% (three steps); (b) (i) TBAF, THF, rt; (ii) TsCl, pyridine, 0 °C to rt; (iii) NaCN, NaHCO3, DMSO, 60 °C; 80% (three steps); (c) (i) p-TsOH, MeOH, rt; (ii) BnBr, Ag2O, AcOEt, rt; 67% (two steps); (d) DIBAL-H, toluene, −78 °C; 67%.
Diastereoselective allylation of 4.
| Entry | Reagent (amount [equiv]) | Solvent | Time | Yield [%]a ( | |
| 1 | AllylSnBu3 (3.0), TBSOTf (1.5) | toluene | −78 °C | 9 h | 96 (69/31) |
| 2 | AllylSnBu3 (3.0), InCl3 (1.5) | CH2Cl2 | 0 °C | 0.75 h | quant. (44/56) |
| 3 | AllylTMS (4.0), ZnCl2 (4.0) | toluene | rt | 16 h | 24 (99/1) |
| 4 | AllylTMS (4.0), TBSOTf (2.0) | CH2Cl2 | −78 to −45 °C | 2 h | 29 (99/1) |
| 5 | AllylTMS (10.0), TBSOTf (1.5) | toluene | −78 °C | 3 h | 41 (96/4) |
aIsolated yield. bDiastereomeric ratios were determined by 1H NMR (300 MHz).