A Comprehensive, High-Resolution Map of a Gene’s Fitness Landscape

Всеобъемлющая карта ландшафта приспособленности гена с высоким разрешением
Marc Ostermeier, Jeffrey J. Gray, Jason W. Labonte, Elad Firnberg
2014-02-23

TEM-1 β-lactamasedistribution of fitness effectsfitness landscapeprotein mutational tolerancethermodynamic stability
Mutations are central to evolution, providing the genetic variation upon which selection acts. A mutation's effect on the suitability of a gene to perform a particular function (gene fitness) can be positive, negative, or neutral. Knowledge of the distribution of fitness effects (DFE) of mutations is fundamental for understanding evolutionary dynamics, molecular-level genetic variation, complex genetic disease, the accumulation of deleterious mutations, and the molecular clock. We present comprehensive DFEs for point and codon mutants of the Escherichia coli TEM-1 β-lactamase gene and missense mutations in the TEM-1 protein. These DFEs provide insight into the inherent benefits of the genetic code's architecture, support for the hypothesis that mRNA stability dictates codon usage at the beginning of genes, an extensive framework for understanding protein mutational tolerance, and evidence that mutational effects on protein thermodynamic stability shape the DFE. Contrary to prevailing expectations, we find that deleterious effects of mutation primarily arise from a decrease in specific protein activity and not cellular protein levels.
1
Contrary to prevailing expectations, deleterious mutations primarily reduce specific protein activity rather than cellular protein abundance.
2
The dataset establishes an extensive framework for understanding protein mutational tolerance and shows that thermodynamic stability effects contribute to shaping mutation fitness effects.
3
The measured DFEs reveal benefits of the genetic code’s architecture and support the hypothesis that mRNA stability influences codon usage near gene beginnings.
4
The study provides comprehensive, high-resolution distributions of fitness effects for point, codon, and missense mutations in the E. coli TEM-1 β-lactamase gene and protein.

Escherichia coli TEM-1 β-lactamase gene and TEM-1 protein mutants

The distribution and determinants of fitness effects of point, codon, and missense mutations, including their impacts on specific protein activity, cellular protein levels, and thermodynamic stability

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2014-02-23
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Marc Ostermeier
Jeffrey J. Gray
Jason W. Labonte
Elad Firnberg
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