| Literature DB >> 25670981 |
Pabbaraja Srihari1, Namballa Hari Krishna2, Ydhyam Sridhar1, Ahmed Kamal3.
Abstract
An enantioselective formal total synthesis of aspergillide C is accomplished using commercially available tri-O-acetyl-D-galactal employing a Ferrier-type C-glycosylation, utilizing a Trost hydrosilylation and protodesilylation as key reactions.Entities:
Keywords: Ferrier-type C-glycosylation; alkynylation; chiron approach; macrolide
Year: 2014 PMID: 25670981 PMCID: PMC4311580 DOI: 10.3762/bjoc.10.329
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Structures of aspergillides.
Scheme 1Retrosynthetic analysis for (−)-aspergillide C.
Scheme 2Synthesis of 11. Reaction conditions: (a) n-BuLi, THF/HMPA (5:1), −78 °C to rt, 12 h, 95%; (b) Li, t-BuOK, H2N(CH2)3NH2, rt, 4 h, 92%; (c) i. n-BuLi, TMSCl, THF, −78 °C, 92%. ii. pyridine, C6H5COCl, CH2Cl2, 0 °C to rt, 1 h, 98%; (d) SnCl4, CH2Cl2, 0 °C to rt, 1 h, 85%.
Figure 2Key NOESY correlations observed in compound 11.
Scheme 3Synthesis of 4 and formal total synthesis of (−)-aspergillide C (3). Reaction conditions: (a) [Cp*(MeCN)3Ru]PF6, (EtO)3SiH, CH2Cl2, 0 °C to rt, 1 h, 95%; (b) HF/pyridine, pyridine, THF, 0 °C, 5 min, 90%; (c) cat. AcCl, MeOH, rt, 12 h, 90%; (d) (i) TBSCl, imidazole, DMAP, CH2Cl2, rt, 12 h, 95%; (ii) 70% HF in pyridine, THF, 0 °C, 12 h, 90%; (e) (i) Tf2O, 2,6-lutidine, −78 °C, 10 min; (ii) NaCN, DMF/DMSO, 18-crown-6, 90 °C, 30 min 88% overall for two steps; (f) 8 N NaOH, EtOH, 90 °C, 3 h, 75%.
Comparision of 1H and 13C NMR data of seco acid 4 with earlier data.
| Position | Kuwahara data [ | Our data | ||
| δ mult [ | 13C NMR CDCl3,125 MHz | δ mult [ | 13C NMR | |
| 1 | 174.9 (COOH) | 175.0 | ||
| 2 | 2.72 (dd, | 37.7 (CH2) | 2.71 (dd, | 37.8 |
| 3 | 3.93–3.96 (m, 1H) | 68.1 (CH) | 3.93–3.98 (m) | 68.1 |
| 4 | 4.18 (dt, | 69.5 (CH) | 4.18 (dt | 69.6 |
| 5 | 5.85–5.91 (m, 2H) | 126.7 (CH) | 5.84–5.91 (m) | 126.7 |
| 6 | 127.5 (CH) | 127.5 | ||
| 7 | 4.69 (d, | 72.5 (CH) | 4.68 (d, | 72.4 |
| 8 | 5.51 (dd, | 130.7 (CH) | 5.51 (dd, | 130.7 |
| 9 | 5.66 (dt, | 134.8 (CH) | 5.77–5.60 (m) | 134.6 |
| 10 | 2.00–2.08 (m, 1H) | 36.0 (CH2) | 1.96–2.20 (m) | 35.9 |
| 11 | 1.34–1.52 (m, 3H) | 24.4 (CH2) | 1.34–1.52 (m) | 24.5 |
| 12 | 31.7 (CH2) | 31.7 | ||
| 13 | 3.82 (sex, | 64.4 (CH) | 3.82 (sex, | 64.4 |
| 14 | 1.18 (d, | 22.8 (CH3) | 1.18 (d | 22.9 |
| 15 | 0.093 (s, 3H) | −4.6 (Si-CH3) | 0.09 (s) | −4.6 |
| 16 | 0.086 (s, 3H) | −4.1 (Si-CH3) | 0.08–0.10 (m) | −4.1 |
| 17 | – | 18.2 (C) | – | 18.2 |
| 18 | 0.90 (s, 9H) | 25.9 (C(CH3)3) | 0.90 (s) | 25.9 |
| OH | 1.25 (s, 1H) | – | 1.25 (s) | – |