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Halogen bonding (X‐bonding): A biological perspective

Protein Science · 2012 · Vol. 22(2) · pp. 139–152
Matthew R. ScholfieldCrystal M. Vander ZandenMegan CarterP Shing Ho

Abstract

The concept of the halogen bond (or X-bond) has become recognized as contributing significantly to the specificity in recognition of a large class of halogenated compounds. The interaction is most easily understood as primarily an electrostatically driven molecular interaction, where an electropositive crown, or σ-hole, serves as a Lewis acid to attract a variety of electron-rich Lewis bases, in analogous fashion to a classic hydrogen bonding (H-bond) interaction. We present here a broad overview of X-bonds from the perspective of a biologist who may not be familiar with this recently rediscovered class of interactions and, consequently, may be interested in how they can be applied as a highly directional and specific component of the molecular toolbox. This overview includes a discussion for where X-bonds are found in biomolecular structures, and how their structure-energy relationships are studied experimentally and modeled computationally. In total, our understanding of these basic concepts will allow X-bonds to be incorporated into strategies for the rational design of new halogenated inhibitors against biomolecular targets or toward molecular engineering of new biological-based materials.

Crystallography and molecular interactionsBioactive Compounds and Antitumor AgentsCorrosion Behavior and InhibitionHalogen bondHydrogen bondToolboxChemistryChemical bondLewis acids and basesMolecular recognitionVariety (cybernetics)Chemical physicsNanotechnology

MeSH terms

Binding SitesBiological FactorsHalogensModels, Molecular

Funding

  • National Science Foundation
  • Colorado State University
  • Division of Chemistry
Citations
449
FWCI
26.76
field-weighted impact
References
78
Percentile
100%
vs. same field & year
Citations per year
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References
Halogen Bonding: A Paradigm in Supramolecular Chemistry
Chemistry - A European Journal · 2001 · 987 citations
The Amber biomolecular simulation programs
Journal of Computational Chemistry · 2005 · 9,470 citations
The Protein Data Bank
Nucleic Acids Research · 2000 · 39,191 citations
Halogen Bonding Based Recognition Processes:  A World Parallel to Hydrogen Bonding
Accounts of Chemical Research · 2005 · 1,890 citations
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