| Literature DB >> 31183311 |
Zizhen Yin1, Hiroki Moriwaki2, Hidenori Abe2, Toshio Miwa2, Jianlin Han1, Vadim A Soloshonok3,4.
Abstract
Here we report the first large-scale synthesis of Fmoc-(S)-2-amino-6,6,6-trifluorohexanoic acid via asymmetric alkylation of chiral Ni(II)-complex of glycine Schiff base with CF3(CH2)3I. The synthesis was performed on over 100 g scale and can be recommended as the most advanced procedure for reliable preparation of large amounts of enantiomerically pure Fmoc-(S)-2-amino-6,6,6-trifluorohexanoic acid for protein engineering and drug design. Chiral auxiliary used in this protocol can be >90 % recovered and reused.Entities:
Keywords: amino acids; asymmetric synthesis; fluorine; large-scale synthesis; stereochemical outcome
Year: 2019 PMID: 31183311 PMCID: PMC6554705 DOI: 10.1002/open.201900131
Source DB: PubMed Journal: ChemistryOpen ISSN: 2191-1363 Impact factor: 2.911
Scheme 1Approach for preparation of Fmoc derivative (S)‐3 developed in this work.
Figure 1Structure of new peptide containing AA 1.
Scheme 2Large‐scale synthesis of Fmoc derivative (S)‐3 via alkylation of chiral nucleophilic glycine equivalent (S)‐2.
Optimization of reaction conditions.[a]
|
| |||||
|---|---|---|---|---|---|
| Entry | Time (min) | Solvent |
| Product | ( |
| 1 | 10 | DMF | 0.36 | 86.34 | 1.87 |
| 2 | 60 | DMF | 0.33 | 87.21 | 1.73 |
| 3 | 120 | DMF | 0.30 | 88.49 | 1.55 |
| 4 | 120 | dry DMF | 0.09 | 96.49 | 0.35 |
| 5 | 10 | deoxidized DMF | 0.14 | 95.53 | 2.00 |
| 6 | 60 | deoxidized DMF | 0.12 | 94.44 | 1.76 |
| 7 | 120 | deoxidized DMF | 0.12 | 94.34 | 1.72 |
| 8 | 120 | dry deoxidized DMF | 0.10 | 98.46 | 0.47 |
[a] Reaction conditions: Ni‐complex 2, CF3(CH2)I (1.05 equiv), 10 % KOH/MeOH (1.05 equiv), in DMF at room temperature under argon. [b] Determined by HPCL.