| Literature DB >> 28392421 |
Alana Dreßen1, Thomas Hilberath2, Ursula Mackfeld3, Arne Billmeier4, Jens Rudat5, Martina Pohl6.
Abstract
Phenylalanine ammonia lyase (PAL) from Arabidopsis thaliana (AtPAL2) was comparatively characterized to the well-studied enzyme from parsley (PcPAL1) and Rhodosporidium toruloides (RtPAL) with respect to kinetic parameters for the deamination and the amination reaction, pH- and temperature optima and the substrate range of the amination reaction. Whereas both plant enzymes are specific for phenylalanine, the bifunctional enzyme from Rhodosporidium toruloides shows KM-values for L-Phe and L-Tyr in the same order of magnitude and, compared to both plant enzymes, a 10-15-fold higher activity. At 30°C all enzymes were sufficiently stable with half-lives of 3.4days (PcPAL1), 4.6days (AtPAL2) and 9.7days (RtPAL/TAL). Very good results for the amination of various trans-cinnamic acid derivatives were obtained using E. coli cells as whole cell biocatalysts in ammonium carbonate buffer. Investigation of the substrate ranges gave interesting results for the newly tested enzymes from A. thaliana and R. toruloides. Only the latter accepts besides 4-hydroxy-CA also 3-methoxy-4-hydroxy-CA as a substrate, which is an interesting intermediate for the formation of pharmaceutically relevant L-Dopa. AtPAL2 is a very good catalyst for the formation of (S)-3-F-Phe, (S)-4-F-Phe and (S)-2-Cl-Phe. Such non-canonical amino acids are valuable building blocks for the formation of various drug molecules.Entities:
Keywords: (S)-2-F-Phe (Pubchem CID: 716319); (S)-3-Cl-Phe (Pubchem CID: 85680); (S)-3-F-Phe (Pubchem CID: 9976); (S)-3-OCH(3)-4-OH-Phe (Pubchem CID: 94331; (S)-4-Cl-Phe (Pubchem CID:4652); (S)-4-F-Phe (Pubchem CID: 716312); (S)-Phe (Pubchem CID: 6140); (S)-tyrosine (Pubchem CID 6057); (S)‐2‐Cl-Phe (Pubchem CID85679); Chiral synthesis; MIO enzyme; Phenylalanine ammonia lyase; Substrate range; Tyrosine ammonia lyase; Whole cell biotransformation; trans-cinnamic acid (Pubchem CID: 444539)
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Year: 2017 PMID: 28392421 DOI: 10.1016/j.jbiotec.2017.04.005
Source DB: PubMed Journal: J Biotechnol ISSN: 0168-1656 Impact factor: 3.307