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research article

A Systematic Survey of an Intragenic Epistatic Landscape

Bank, Claudia  
•
Hietpas, Ryan T.
•
Jensen, Jeffrey D.  
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2015
Molecular Biology And Evolution

Mutations are the source of evolutionary variation. The interactions of multiple mutations can have important effects on fitness and evolutionary trajectories. We have recently described the distribution of fitness effects of all single mutations for a nine-amino-acid region of yeast Hsp90 (Hsp82) implicated in substrate binding. Here, we report and discuss the distribution of intragenic epistatic effects within this region in seven Hsp90 point mutant backgrounds of neutral to slightly deleterious effect, resulting in an analysis of more than 1,000 double mutants. We find negative epistasis between substitutions to be common, and positive epistasis to be rare-resulting in a pattern that indicates a drastic change in the distribution of fitness effects one step away from the wild type. This can be well explained by a concave relationship between phenotype and genotype (i.e., a concave shape of the local fitness landscape), suggesting mutational robustness intrinsic to the local sequence space. Structural analyses indicate that, in this region, epistatic effects are most pronounced when a solvent-inaccessible position is involved in the interaction. In contrast, all 18 observations of positive epistasis involved at least one mutation at a solvent-exposed position. By combining the analysis of evolutionary and biophysical properties of an epistatic landscape, these results contribute to a more detailed understanding of the complexity of protein evolution.

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Type
research article
DOI
10.1093/molbev/msu301
Web of Science ID

WOS:000350050200021

PubMed ID

25371431

Author(s)
Bank, Claudia  
Hietpas, Ryan T.
Jensen, Jeffrey D.  
Bolon, Daniel N. A.
Date Issued

2015

Publisher

Oxford Univ Press

Published in
Molecular Biology And Evolution
Volume

32

Issue

1

Start page

229

End page

238

Subjects

epistasis

•

experimental evolution

•

fitness landscapes

•

distribution of fitness effects

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPJENSEN  
Available on Infoscience
April 13, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/113284
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