Directed evolution of glutathione transferases towards a selective glutathione-binding site and improved oxidative stability

被引:18
作者
Axarli, Irine [1 ]
Muleta, Abdi W. [2 ,3 ]
Chronopoulou, Evangelia G. [1 ]
Papageorgiou, Anastassios C. [2 ,3 ]
Labrou, Nikolaos E. [1 ]
机构
[1] Agr Univ Athens, Sch Food Biotechnol & Dev, Dept Biotechnol, Lab Enzyme Technol, 75 Iera Odos St, GR-11855 Athens, Greece
[2] Univ Turku, BioCity, Turku Ctr Biotechnol, Turku 20521, Finland
[3] Abo Akad Univ, Turku 20521, Finland
来源
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS | 2017年 / 1861卷 / 01期
关键词
Directed evolution; Glutathione transferase A1-1; Protein stability; X-ray structure; S-TRANSFERASE; ALPHA-CLASS; SECONDARY-STRUCTURE; MU-CLASS; QUANTIFICATION; PURIFICATION; ADSORBENTS; ALIGNMENT; REVEALS; NETWORK;
D O I
10.1016/j.bbagen.2016.09.004
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: Glutathione transferases (GSTs) are a family of detoxification enzymes that catalyze the conjugation of glutathione (GSH) to electrophilic compounds. Methods: A library of alpha class GSTs was constructed by DNA shuffling using the DNA encoding the human glutathione transferase A1-1 (hGSTA1-1) and the rat glutathione transferase A1-1 (rGSTA1-1). Results: Activity screening of the library allowed the selection of a chimeric enzyme variant (GSTD4) that displayed high affinity towards GSH and GSH-Sepharose affinity adsorbent, higher Iccat/K, and improved thermal stability, compared to the parent enzymes. The crystal structures of the GSTD4 enzyme in free form and in complex with GSH were determined to 1.6 angstrom and 2.3 angstrom resolution, respectively. Analysis of the GSTD4 structure showed subtle conformational changes in the GSH-binding site and in electron-sharing network that may contribute to the increased GSH affinity. The shuffled variant GSTD4 was further optimized for improved oxidative stability employing site-saturation mutagenesis. The Cys112Ser mutation confers optimal oxidative stability and kinetic properties in the GSTD4 enzyme. Conclusions: DNA shuffling allowed the creation of a chimeric enzyme variant with improved properties, compared to the parent enzymes. X-ray crystallography shed light on how recombination of a specific segment from homologous GSTA1-1 together with point mutations gives rise to a new functionally competent enzyme with improved binding, catalytic properties and stability. General significance: Such an engineered GST would be useful in biotechnology as affinity tool in affinity chromatography as well as a biocatalytic matrix for the construction of biochips or enzyme biosensors. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:3416 / 3428
页数:13
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