| Literature DB >> 25624766 |
Takeshi Fukushima1, Anna Sugiura1, Ippei Furuta1, Sumiko Iwasa1, Hideaki Iizuka1, Hideaki Ichiba1, Mayu Onozato1, Hidemasa Hikawa2, Yuusaku Yokoyama2.
Abstract
6-Chlorotryptophan possesses unique bioactivity and can be used as a precursor for several bioactive compounds in medicinal chemistry. It was enantioselectively synthesized by condensing 6-chloroindole with racemic N-acetylserine, followed by enzymatic hydrolysis with l-aminoacylase (EC 3.5.1.14). The optical purity was examined by conducting high-performance liquid chromatography with a Cinchona alkaloid-based zwitterionic chiral stationary phase (CSP) [CHIRALPAK(®) ZWIX(+)], which bears a chiral trans-2-aminocyclohexanesulfonic acid moiety tagged at C-9 of the Cinchona alka-loid. The zwitterionic CSP enabled efficient enantiomeric separations of monosubstituted tryptophan derivatives 1-methyltryptophan, 5-methyltryptophan, 6-methyltryptophan, 5-methoxytryptophan, and 6-chlorotryptophan with a methanol/H2O (98/2) mobile phase containing formic acid (FA) and diethylamine (DEA) additives. The mobile phase contains 25-75 mM FA and 20-50 mM DEA, enabling good separation of the enantiomers of each tryptophan derivative (α > 1.25). Thus, the optical purity of the synthesized 6-chloro-l-tryptophan was easily determined (greater than 99.0%) using HPLC with the zwitterionic CSP.Entities:
Keywords: 6-chlorotryptophan; CHIRALPAK® ZWIX(+); enantiomer; high-performance liquid chromatography
Year: 2015 PMID: 25624766 PMCID: PMC4287053 DOI: 10.4137/IJTR.S20381
Source DB: PubMed Journal: Int J Tryptophan Res ISSN: 1178-6469
Figure 1Synthetic route of 6-chloro-l-Trp.
Figure 2Chemical structures of Trp and their derivatives (1-methyl-d,l-Trp, 5-methyl-d,l-Trp, 6-methyl-d,l-Trp, 5-methoxy-d,l-Trp, and 6-chloro-d,l-Trp), and Trp metabolites (d,l-KYN and 3-hydroxy-d,l-KYN).
Separation factor (α) and resolution (Rs) of Trp, the derivatives, and Trp metabolites on the Cinchona alkaloid-based zwitterionic CSP.
| 25 mM | 25 mM | 50 mM | 25 mM | 50 mM | 20 mM | 40 mM | 20 mM | 60 mM | 20 mM | 75 mM | 50 mM | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1.45 | 2.57 | 1.51 | 5.04 | 1.50 | 5.14 | 1.50 | 4.87 | 1.49 | 5.02 | 1.47 | 4.21 | |
| 1-Methyl- | 1.28 | 1.52 | 1.27 | 2.92 | 1.27 | 2.64 | 1.27 | 2.51 | 1.26 | 2.61 | 1.27 | 2.14 |
| 5-Methyl- | 1.52 | 2.96 | 1.56 | 5.39 | 1.55 | 5.43 | 1.56 | 5.15 | 1.54 | 5.40 | 1.53 | 4.79 |
| 6-Methyl- | 1.59 | 3.65 | 1.59 | 5.74 | 1.58 | 5.98 | 1.58 | 5.59 | 1.63 | 6.08 | 1.58 | 5.03 |
| 5-Methoxy- | 1.48 | 1.87 | 1.47 | 4.92 | 1.46 | 4.93 | 1.46 | 4.71 | 1.46 | 4.84 | 1.45 | 4.23 |
| 6-chloro- | 1.33 | 2.22 | 1.38 | 3.99 | 1.38 | 4.37 | 1.39 | 3.96 | 1.39 | 4.09 | 1.36 | 3.49 |
| 1.26 | 1.36 | 1.28 | 2.55 | 1.27 | 2.72 | 1.27 | 2.46 | 1.29 | 2.78 | 1.27 | 2.22 | |
| 3-Hydroxy- | 1.26 | 1.18 | 1.25 | 2.43 | 1.26 | 2.67 | 1.26 | 2.31 | 1.27 | 2.71 | 1.26 | 2.20 |
Figure 3Chromatogram of a 6-chloro-d,l-Trp standard (A) and synthesized 6-chloro-l-Trp (B) on Cinchona alkaloid-based zwitterionic CSP with a mobile phase of 50 mM FA and 25 mM DEA in MeOH/H2O (98/2).