Literature DB >> 18220846

Engineering the properties of D-amino acid oxidases by a rational and a directed evolution approach.

Loredano Pollegioni1, Silvia Sacchi, Laura Caldinelli, Angelo Boselli, Mirella S Pilone, Luciano Piubelli, Gianluca Molla.   

Abstract

D-amino acid oxidase (DAAO) is a FAD-containing flavoprotein that dehydrogenates the D-isomer of amino acids to the corresponding imino acids, coupled with the reduction of FAD. The cofactor then reoxidizes on molecular oxygen and the imino acid hydrolyzes spontaneously to the alpha-keto acid and ammonia. In vitro DAAO displays broad substrate specificity, acting on several neutral and basic D-amino acids: the most efficient substrates are amino acids with hydrophobic side chains. D-aspartic acid and D-glutamic acid are not substrates for DAAO. Through the years, it has been the subject of a number of structural, functional and kinetic investigations. The most recent advances are represented by site-directed mutagenesis studies and resolution of the 3D-structure of the enzymes from pig, human and yeast. The two approaches have given us a deeper understanding of the structure-function relationships and promoted a number of investigations aimed at the modulating the protein properties. By a rational and/or a directed evolution approach, DAAO variants with altered substrate specificity (e.g., active on acidic or on all D-amino acids), increased stability (e.g., stable up to 60 degrees C), modified interaction with the flavin cofactor, and altered oligomeric state were produced. The aim of this paper is to provide an overview of the most recent research on the engineering of DAAOs to illustrate their new intriguing properties, which also have enabled us to pursue new biotechnological applications.

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Year:  2007        PMID: 18220846     DOI: 10.2174/138920307783018677

Source DB:  PubMed          Journal:  Curr Protein Pept Sci        ISSN: 1389-2037            Impact factor:   3.272


  7 in total

Review 1.  Bacterial d-amino acid oxidases: Recent findings and future perspectives.

Authors:  Shouji Takahashi; Katsumasa Abe; Yoshio Kera
Journal:  Bioengineered       Date:  2015-05-21       Impact factor: 3.269

2.  A Highly Stable D-Amino Acid Oxidase of the Thermophilic Bacterium Rubrobacter xylanophilus.

Authors:  Shouji Takahashi; Makoto Furukawara; Keishi Omae; Namiho Tadokoro; Yayoi Saito; Katsumasa Abe; Yoshio Kera
Journal:  Appl Environ Microbiol       Date:  2014-09-12       Impact factor: 4.792

3.  Structure-Function Relationships in l-Amino Acid Deaminase, a Flavoprotein Belonging to a Novel Class of Biotechnologically Relevant Enzymes.

Authors:  Paolo Motta; Gianluca Molla; Loredano Pollegioni; Marco Nardini
Journal:  J Biol Chem       Date:  2016-03-28       Impact factor: 5.157

4.  Assays of D-Amino Acid Oxidase Activity.

Authors:  Elena Rosini; Laura Caldinelli; Luciano Piubelli
Journal:  Front Mol Biosci       Date:  2018-01-18

5.  CLytA-DAAO, Free and Immobilized in Magnetic Nanoparticles, induces Cell Death in Human Cancer Cells.

Authors:  María Fuentes-Baile; Daniel Bello-Gil; Elizabeth Pérez-Valenciano; Jesús M Sanz; Pilar García-Morales; Beatriz Maestro; María P Ventero; Cristina Alenda; Víctor M Barberá; Miguel Saceda
Journal:  Biomolecules       Date:  2020-02-03

6.  Expansion of the Substrate Specificity of Porcine Kidney D-Amino Acid Oxidase for S-Stereoselective Oxidation of 4-Cl-Benzhydrylamine.

Authors:  Kazuyuki Yasukawa; Fumihiro Motojima; Atsushi Ono; Yasuhisa Asano
Journal:  ChemCatChem       Date:  2018-07-13       Impact factor: 5.686

7.  Modulating D-amino acid oxidase (DAAO) substrate specificity through facilitated solvent access.

Authors:  Kalyanasundaram Subramanian; Artur Góra; Ruud Spruijt; Karolina Mitusińska; Maria Suarez-Diez; Vitor Martins Dos Santos; Peter J Schaap
Journal:  PLoS One       Date:  2018-06-15       Impact factor: 3.240

  7 in total

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