| Literature DB >> 33262971 |
Katarzyna Lubiak-Kozłowska1, Małgorzata Brzezińska-Rodak1, Magdalena Klimek-Ochab1, Tomasz K Olszewski2, Monika Serafin-Lewańczuk1, Ewa Żymańczyk-Duda1.
Abstract
Rhodotorula mucilaginosa was successfully applied as a biocatalyst for the enantioselective resolution of the racemic mixtures of heteroatom phosphonates derivatives, resulting in receiving the following enantiomers: (S)-1-amino-1(2-thienyl)methylphosphonic acid (Product 1) and (R)-1-amino-1-(3'pirydyl) methylphosphonic acid (Product 2). Biological synthesis of both products is reported for the first time. Pure (S)-1-amino-1-(2-thienyl)methylphosphonic acid (Product 1) was isolated with a conversion degree of 50% after 24 h of biotransformation was conducted on a laboratory scale under moderate conditions (1.55 mM of substrate 1, 100 mL of distilled water, 135 rpm, 25°C; Method A). The scale was enlarged to semi-preparative one, using a simplified flow-reactor (Method C; 3.10 mM of substrate 1) and immobilized biocatalyst. The product was isolated with a conversion degree of 50% just after 4 h of biotransformation. Amino-1-(3'pirydyl)methylphosphonic acid (Substrate 2) was converted according to novel procedure, by the immobilized biocatalyst - Rhodotorula mucilaginosa. The process was carried out under moderate conditions (3.19 mM - substrate 2 solution; Method C1) with the application of a simplified flow reactor system, packed with the yeasts biomass entrapped in 4% agar-agar solution. Pure (R)-amino-1-(3'pirydyl)methylphosphonic (50% of conversion degree) was received within only 48 h.Entities:
Keywords: Rhodotorula mucilaginosa; biocatalysis; heterocyclic phosphonates; pure enantiomers; stereoselectivity
Year: 2020 PMID: 33262971 PMCID: PMC7686439 DOI: 10.3389/fchem.2020.589720
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 231P NMR spectrum of racemic 1-amino-1-(2-thienyl)methylphosphonic acid (substrate 1) with the addition of α-cyclodextrin (as chiral solvating agent) at pH 7.
Figure 331P NMR spectra of biotransformation products recorded with the addition of CSA after the conversion of racemic 1-amino-1-(2-thienyl)methylphosphonic acid with Rhodotorula mucilaginosa (Method A) without (A) and with the addition of racemic mixture of substrate 1 (B).
Results of biotransformation of the racemic mixture of 1-amino-1(2-thienyl)methylphosphonic acid (substrate 1) with fresh, wet biocatalysts cells.
| A | 24 h | 100% |
| A1 | 95% | |
| A2 | 96% | |
| A | 48 h | 44% |
| A1 | 100% | |
| A2 | 100% |
Conversion degrees of the processes were 50%.
Figure 431P NMR spectra of post-bioconversion mixture recorded with the addition of CSA, after the biotransformation of racemic 1-amino-1-(2-thienyl)methylphosphonic acid using Rhodotorula mucilaginosa as biocatalyst (Method A3).
Results of biotransformation of the racemic mixture of 1-amino-1(2-thienyl)methylphosphonic acid (substrate 1) using an immobilized biocatalyst.
| B2 | 48 h | 42% |
| 168 h | 47% | |
| C | 4 h | 100% |
Conversion degrees of the processes were 50%.
Figure 531P NMR spectra of post-bioconversion mixture recorded with the addition of CSA, after biotransformation of racemic 1-amino-1-(2-thienyl)methylphosphonic acid using Rhodotorula mucilaginosa immobilized in 4% agar-agar water solution (Method C).
Results of biotransformation of the racemic mixture of (3′pirydyl)methylphosphonic acid (substrate 2) with immobilized biocatalyst (agar-agar entrapment).
| C1 | 24 h | - |
| 48 h | 100% | |
| 72 h | 100% | |
| 96 h | - |
“-” means lack of the product. Conversion degrees of the processes were 50%.
Figure 631P NMR spectrum of post-bioconversion mixture recorded with the addition of CSA, after the biotransformation of racemic 1-amino-1-(3′pirydyl)methylphosphonic acid using immobilized Rhodotorula mucilaginosa as biocatalyst (method C1).
Scheme 1General scheme of biotransformation of amino phosphonates, applies also to substrates 1 and 2. The path of possible racemization, a consequence of the extension of the bioconversion time is also introduced with the arrow.