| Literature DB >> 24991253 |
Bernd Schmidt1, Sylvia Hauke1.
Abstract
Cross metathesis of a lactate derived allylic alcohol and acrolein is the entry point to a de novo synthesis of 4-benzoate protected L-amicetose and a cinerulose derivative protected at C5 and C1.Entities:
Keywords: carbohydrates; de novo synthesis; lactate; metathesis; ruthenium
Year: 2014 PMID: 24991253 PMCID: PMC4077472 DOI: 10.3762/bjoc.10.102
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Structures of kigamicin B and aclacinomycin A as representative examples for antineoplastic glycoconjugates.
Scheme 1RCM-isomerization approach to L-amicetal 4 and alternative CM approaches to L-amicetose.
Catalyst screening for CM of allyl alcohol 2 and acrolein.
| entry | catalyst | cat. loading | additive (equiv) | solvent | yield of | |
| 1a | 5 mol % | phenol (0.5) | CH2Cl2 | 25 °C | 25% | |
| 2a | 5 mol % | phenol (0.5) | CH2Cl2 | 40 °C | 20% | |
| 3 | 5 mol % | phenol (0.5) | toluene | 80 °C | 68% | |
| 4 | 5 mol % | – | CH2Cl2 | 25 °C | 86% | |
| 5 | 5 mol % | – | CH2Cl2 | 40 °C | 99% | |
| 6 | 2.5 mol % | – | CH2Cl2 | 40 °C | 76% | |
| 7 | 5 mol % | – | CH2Cl2 | 40 °C | 65% | |
| 8 | 5 mol % | – | toluene | 80 °C | 80% | |
| 9 | 2.5 mol % | – | toluene | 80 °C | 65% | |
aAllylic alcohol 2 was recovered in 21% yield (entry 1) and in 12% yield (entry 2), respectively.
C4–OH protection as benzoate.
| entry | reagents and conditions | product | yield |
| 1 | benzoyl chloride (1.5 equiv), pyridine (0.4 M), 65 °C, 12 h | 47% | |
| 2a | benzoyl chloride (2.6 equiv), NEt(iPr)2 (3.0 equiv), CH2Cl2, 40 °C, 12 h | <20% | |
| 3 | benzoic acid (1.8 equiv), DCC (1.8 equiv), DMAP | 82% | |
aStarting material 8 was recovered in ca. 80% yield.
Hydrogenation of benzoyl protected enal 9.
| entry | reagents and conditions | |||||
| 1 | Pd/C (10 wt %; 1.6 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 31% | – | 16% | 16% | 8% |
| 2 | Pd(OAc)2 (1 mol %), activated charcoal (9 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 28% | 9% | trace | – | – |
| 3a | Pd(OH)2/C (10 wt %; 1.2 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 51% | 32% | – | – | – |
aProducts 11 and 12 were obtained as an inseparable mixture, yields are estimated from 1H NMR spectrum.
Scheme 2Two step desilylation–acetal hydrolysis.
Scheme 3Deprotection of 11 and 12 to L-amicetose derivative 16.
Scheme 4Synthesis of a cinerulose-TBS ether 22.
Chemoselective acetalization of oxidation product 21.
| entry | reagents and conditions | yield of |
| 1 | Pd/C (“batch 2”, 10 wt %; 2.2 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 52% |
| 2 | Pd(OH)2/C (10 wt %; 1,7 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 43% |
| 3 | Pd(OAc)2 (0.5 mol %), activated charcoal (9 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 34%a |
| 4 | Pd(OAc)2 (1.0 mol %), activated charcoal (9 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 82% |
aEstimated from 1H NMR spectrum (21 and 23 were obtained as an inseparable mixture in ca. 90% combined yield).
Hydrogenation of acetal 23.
| entry | reagents and conditions | |||
| 1a | Pd(OAc)2 (1.0 mol %), activated charcoal (9 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 7% | 16% | 7% |
| 2 | Pd/C (10 wt %; 2.2 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 19% | n.d. | 38% |
| 3 | Pd(OH)2/C (10 wt %; 1.0 mol %), H2 (1 bar), methanol, 20 °C, 12 h | 84% | n.d. | n.d. |
aStarting material 23 (49%) was recovered.
Scheme 5Deprotection of 24.