Epistatic contributions promote the unification of incompatible models of neutral molecular evolution.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32123092.
- Also identified by DOI 10.1073/pnas.1913071117 and PMC identifier 7084075.
- Licence recorded as CC BY-NC-ND.
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Abstract
We introduce a model of amino acid sequence evolution that accounts for the statistical behavior of real sequences induced by epistatic interactions. We base the model dynamics on parameters derived from multiple sequence alignments analyzed by using direct coupling analysis methodology. Known statistical properties such as overdispersion, heterotachy, and gamma-distributed rate-across-sites are shown to be emergent properties of this model while being consistent with neutral evolution theory, thereby unifying observations from previously disjointed evolutionary models of sequences. The relationship between site restriction and heterotachy is characterized by tracking the effective alphabet dynamics of sites. We also observe an evolutionary Stokes shift in the fitness of sequences that have undergone evolution under our simulation. By analyzing the structural information of some proteins, we corroborate that the strongest Stokes shifts derive from sites that physically interact in networks near biochemically important regions. Perspectives on the implementation of our model in the context of the molecular clock are discussed.
Medical subject headings
- Amino Acid Sequence
- Evolution, Molecular
- Genetic Drift
- Proteins