4.7 Article

Structural Reorganization Triggered by Charging of Lys Residues in the Hydrophobic Interior of a Protein

Journal

STRUCTURE
Volume 20, Issue 6, Pages 1071-1085

Publisher

CELL PRESS
DOI: 10.1016/j.str.2012.03.023

Keywords

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Funding

  1. NIH [GM-065197]
  2. Offices of Biological and Environmental Research and of Basic Energy Sciences of the U.S. Department of Energy
  3. National Center for Research Resources of the National Institutes of Health [P41RR012408]
  4. Chapman Charitable Trust

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Structural consequences of ionization of residues buried in the hydrophobic interior of proteins were examined systematically in 25 proteins with internal Lys residues. Crystal structures showed that the ionizable groups are buried. NMR spectroscopy showed that in 2 of 25 cases studied, the ionization of an internal Lys unfolded the protein globally. In five cases, the internal charge triggered localized changes in structure and dynamics, and in three cases, it promoted partial or local unfolding. Remarkably, in 15 proteins, the ionization of the internal Lys had no detectable structural consequences. Highly stable proteins appear to be inherently capable of withstanding the presence of charge in their hydrophobic interior, without the need for specialized structural adaptations. The extent of structural reorganization paralleled loosely with global thermodynamic stability, suggesting that structure-based pK(a) calculations for buried residues could be improved by calculation of thermodynamic stability and by enhanced conformational sampling.

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