Literature DB >> 28402878

The Role of Evolutionary Selection in the Dynamics of Protein Structure Evolution.

Amy I Gilson1, Ahmee Marshall-Christensen1, Jeong-Mo Choi1, Eugene I Shakhnovich2.   

Abstract

Homology modeling is a powerful tool for predicting a protein's structure. This approach is successful because proteins whose sequences are only 30% identical still adopt the same structure, while structure similarity rapidly deteriorates beyond the 30% threshold. By studying the divergence of protein structure as sequence evolves in real proteins and in evolutionary simulations, we show that this nonlinear sequence-structure relationship emerges as a result of selection for protein folding stability in divergent evolution. Fitness constraints prevent the emergence of unstable protein evolutionary intermediates, thereby enforcing evolutionary paths that preserve protein structure despite broad sequence divergence. However, on longer timescales, evolution is punctuated by rare events where the fitness barriers obstructing structure evolution are overcome and discovery of new structures occurs. We outline biophysical and evolutionary rationale for broad variation in protein family sizes, prevalence of compact structures among ancient proteins, and more rapid structure evolution of proteins with lower packing density.
Copyright © 2017 Biophysical Society. Published by Elsevier Inc. All rights reserved.

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Year:  2017        PMID: 28402878      PMCID: PMC5390048          DOI: 10.1016/j.bpj.2017.02.029

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  74 in total

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Review 8.  A structural explanation for the twilight zone of protein sequence homology.

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  12 in total

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6.  Shared Signature Dynamics Tempered by Local Fluctuations Enables Fold Adaptability and Specificity.

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9.  Exposing the distinctive modular behavior of β-strands and α-helices in folded proteins.

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