Multidimensional epistasis and fitness landscapes in enzyme evolution

Author:

Zhang Wei1,Dourado Daniel F. A. R.12,Fernandes Pedro Alexandrino2,Ramos Maria João2,Mannervik Bengt13

Affiliation:

1. Department of Biochemistry and Organic Chemistry, Uppsala University, SE-75123 Uppsala, Sweden

2. Requimte/Departamento de Química e Bioquímica, Faculdade de Ciências, Universidade do Porto, 4169-007 Porto, Portugal

3. Department of Neurochemistry, Stockholm University, SE-10691 Stockholm, Sweden

Abstract

The conventional analysis of enzyme evolution is to regard one single salient feature as a measure of fitness, expressed in a milieu exposing the possible selective advantage at a given time and location. Given that a single protein may serve more than one function, fitness should be assessed in several dimensions. In the present study we have explored individual mutational steps leading to a triple-point-mutated human GST (glutathione transferase) A2-2 displaying enhanced activity with azathioprine. A total of eight alternative substrates were used to monitor the diverse evolutionary trajectories. The epistatic effects of the mutations on catalytic activity were variable in sign and magnitude and depended on the substrate used, showing that epistasis is a multidimensional quality. Evidently, the multidimensional fitness landscape can lead to alternative trajectories resulting in enzymes optimized for features other than the selectable markers relevant at the origin of the evolutionary process. In this manner the evolutionary response is robust and can adapt to changing environmental conditions.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

Reference43 articles.

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3. Glutathione and glutathione transferases: toxicological and pharmacological aspects;Josephy,2006

4. Structure-based redesign of GST A2-2 for enhanced catalytic efficiency with azathioprine;Zhang;Chem. Biol.,2012

5. Protein stability promotes evolvability;Bloom;Proc. Natl. Acad. Sci. U.S.A.,2006

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