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March 15, 2026Open Access

Proteins as Dynamic Networks: Linking Sequence, Structure, Allostery, and Molecular Motion

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Authors

BWBrian WhiteRARodolfo Aramayo

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Overview

This analysis links protein structure and dynamics with allostery, revealing implications for drug discovery and evolutionary fitness.

Key Points

  • To explore the relationship between protein structure, function, and dynamics, with an emphasis on allostery.
  • Analysis of amino acid sequence and intramolecular communication
  • Use of quantitative frameworks for understanding evolutionary patterns
  • Application of molecular dynamics simulations for protein motions
  • Incorporation of classical allosteric models and network-driven approaches.
  • Dynamic networks facilitate insights into protein evolutionary fitness and structural stability.
  • Molecular dynamics simulations bridge structural and functional analyses.
  • This framework advances applications in drug discovery.

Cite This Study

White et al. (2026) studied this question.

synapsesocial.com/papers/69b5ff4f83145bc643d1ba16https://doi.org/10.5281/zenodo.18999779
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Proteins as Dynamic Networks: Linking Sequence, Structure, Allostery, and Molecular Motion2026
  2. 2Advances in Protein Dynamics: Unraveling the Molecular Motions Underlying Biological Functions and Therapeutic Innovations2024
  3. 3Extending the classical sequence–structure–function paradigm through protein dynamics and context‐dependent behavior2026
  4. 4Allostery at a Protein‐Protein Interface Harboring an Intermolecular Motional Network2024 · 7 citations
  5. 5BPS2026 – Computational design of protein allostery2026