| Literature DB >> 35164012 |
Dong-Zhao Yang1, Zhen-Zhen Chen1, Mei Chi1, Ying-Ying Dong1, Shou-Zhi Pu1,2, Qi Sun1.
Abstract
5-Hydroxymethyl-2'-deoxycytidine (5hmdC) phosphoramidite and triphosphate are important building blocks in 5hmdC-containing DNA synthesis for epigenetic studies. However, efficient and practical methods for the synthesis of these compounds are still limited. The current research provides an intensively improved synthetic method that enables the preparation of commercially available cyanoethyl-protected 5hmdC phosphoramidite with an overall yield of 39% on 5 g scale. On the basis of facile and efficient accesses to cyanoethyl protected-5hmdU and 5hmdC intermediates, two efficient synthetic routes for 5hmdC triphosphate were also developed.Entities:
Keywords: 5-hydroxymethyl-2′-deoxycytidine (5hmdC); P(V)-N activation; cyanoethyl ether; phosphoramidite; triphosphate
Year: 2022 PMID: 35164012 PMCID: PMC8839764 DOI: 10.3390/molecules27030749
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 15hmdC Phosphoramidites with different protecting groups (A) and two improved synthetic methods for 5hmdC phosphoramidite 1 (B).
Scheme 1An improved method for practical synthesis of cyanoethyl-protected 5hmdC phosphoramidite (1).
Scheme 2One-step synthesis of cyanoethyl-protected 5hmdU (9) from diTBS-protected 5BrhmdU (8).
Optimization of tritylation conditions for synthesis of 10.
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| Entry | Conditions | Yield (%) |
| 1 | DMT-Cl (1.5 eq), 20 °C, Pyr, 12 h | 51 a |
| 2 | DMT-Cl (1.5 eq), 40 °C, Pyr, 12 h | 46 a |
| 3 | DMT-Cl (1.5 eq), 60 °C, Pyr, 12 h | 34 a,b |
| 4 | DMT-Cl (1.5 eq), DMAP (0.15 eq), 20 °C, Pyr, 6 h | 48 a |
| 5 | DMT-Cl (1.5 eq), DMAP (0.15 eq), DIPEA (2 eq), 20 °C, Pyr, 6 h | 54 a |
| 6 | DMT-trifluoroacetate (1.5 eq), 20 °C, THF, 12 h | No reaction |
| 7 | DMT-trifluoroacetate (1.5 eq), 20 °C, Pyr, 12 h | No reaction |
| 8 | DMT+BF4−(1.5 eq), Li2CO3, (5 eq), DIPEA (3 eq), 20 °C, THF, 5 h | 22 a |
| 9 | DMT+BF4− (1.5 eq), 20 °C, Pyr, 1 h | 85 |
a9 was not completely consumed when the reaction stopped. b diDMT-protected product formed.
Scheme 3Comparison of TPS-Cl, BOP, and PyAOP-based amination methods for the synthesis of 12.
Scheme 4Cyanoethyl-protected 5hmdU (9)-based synthetic route for 14.
Scheme 5Fully protected phosphoropiperidate (20)-based synthetic route for 14.