» Articles » PMID: 17612622

A Modern View of Phenylalanine Ammonia Lyase

Overview
Date 2007 Jul 7
PMID 17612622
Citations 120
Authors
Affiliations
Soon will be listed here.
Abstract

Phenylalanine ammonia lyase (PAL; E.C.4.3.1.5), which catalyses the biotransformation of L-phenylalanine to trans-cinnamic acid and ammonia, was first described in 1961 by Koukol and Conn. Since its discovery, much knowledge has been gathered with reference to the enzyme's catabolic role in microorganisms and its importance in the phenyl propanoid pathway of plants. The 3-dimensional structure of the enzyme has been characterized using X-ray crystallography. This has led to a greater understanding of the mechanism of PAL-catalyzed reactions, including the discovery of a recently described cofactor, 3,5-dihydro-5-methyldiene-4H-imidazol-4-one. In the past 3 decades, PAL has gained considerable significance in several clinical, industrial, and biotechnological applications. The reversal of the normal physiological reaction can be effectively employed in the production of optically pure L-phenylalanine, which is a precursor of the noncalorific sweetener aspartame (L-phenylalanyl-L-aspartyl methyl ester). The enzyme's natural ability to break down L-phenylalanine makes PAL a reliable treatment for the genetic condition phenylketonuria. In this mini-review, we discuss prominent details relating to the physiological role of PAL, the mechanism of catalysis, methods of determination and purification, enzyme kinetics, and enzyme activity in nonaqueous media. Two topics of current study on PAL, molecular biology and crystal structure, are also discussed.

Citing Articles

Transcriptome Analysis Reveals the Crucial Role of Phenylalanine Ammonia-Lyase in Low Temperature Response in .

Wang N, Zhu Y, Zhou Y, Gao F, Cui S Genes (Basel). 2024; 15(11).

PMID: 39596665 PMC: 11593641. DOI: 10.3390/genes15111465.


Biochar Organic Fertilizer Combined with Indigenous Microorganisms Enhances the Growth of Landscape Grass Cultivated in a Substrate Mixed with Iron Tailings and Mining Topsoil.

Li X, Zhang X, Wang J, Liu Z, Song H, An J Plants (Basel). 2024; 13(21).

PMID: 39519961 PMC: 11548118. DOI: 10.3390/plants13213042.


Comprehensive, Genome-Wide Identification and Expression Analyses of Phenylalanine Ammonia-Lyase Family under Abiotic Stresses in .

Karamat U, Guo J, Jiang S, Khan I, Lu M, Fu M Int J Mol Sci. 2024; 25(19).

PMID: 39408602 PMC: 11476911. DOI: 10.3390/ijms251910276.


Genome-Wide Characterization and Expression Analysis of CsPALs in Cucumber ( L.) Reveal Their Potential Roles in Abiotic Stress and Aphid Stress Tolerance.

Gu J, Sohail H, Qiu L, Chen C, Yue H, Li Z Plants (Basel). 2024; 13(18).

PMID: 39339512 PMC: 11435200. DOI: 10.3390/plants13182537.


Direct asymmetric synthesis of β-branched aromatic α-amino acids using engineered phenylalanine ammonia lyases.

Sun C, Lu G, Chen B, Li G, Wu Y, Brack Y Nat Commun. 2024; 15(1):8264.

PMID: 39327443 PMC: 11427684. DOI: 10.1038/s41467-024-52613-x.