4.8 Article

Oxidation increases the strength of the methionine-aromatic interaction

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NATURE CHEMICAL BIOLOGY
卷 12, 期 10, 页码 860-+

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NATURE RESEARCH
DOI: 10.1038/NCHEMBIO.2159

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资金

  1. US National Institutes of Health (NIH) [R01 GM107175]
  2. NIH [R37 AG26160]
  3. US National Science Foundation (NSF)-CAREER [CHE-1352091]
  4. NSF-CAREER [MCB-0845676]
  5. Direct For Mathematical & Physical Scien
  6. Division Of Chemistry [1352091] Funding Source: National Science Foundation

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Oxidation of methionine disrupts the structure and function of a range of proteins, but little is understood about the chemistry that underlies these perturbations. Using quantum mechanical calculations, we found that oxidation increased the strength of the methionine-aromatic interaction motif, a driving force for protein folding and protein-protein interaction, by 0.5-1.4 kcal/mol. We found that non-hydrogen-bonded interactions between dimethyl sulfoxide (a methionine analog) and aromatic groups were enriched in both the Protein Data Bank and Cambridge Structural Database. Thermal denaturation and NMR spectroscopy experiments on model peptides demonstrated that oxidation of methionine stabilized the interaction by 0.5-0.6 kcal/mol. We confirmed the biological relevance of these findings through a combination of cell biology, electron paramagnetic resonance spectroscopy and molecular dynamics simulations on (i) calmodulin structure and dynamics, and (ii) lymphotoxin-a binding to TNFR1. Thus, the methionine-aromatic motif was a determinant of protein structural and functional sensitivity to oxidative stress.

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