4.6 Article

Like-Charge Guanidinium Pairing from Molecular Dynamics and Ab Initio Calculations

Journal

JOURNAL OF PHYSICAL CHEMISTRY A
Volume 115, Issue 41, Pages 11193-11201

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp203519p

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Funding

  1. Czech Ministry of Education [LC512, LH11020]
  2. Czech Science Foundation [203/08/0114]
  3. Academy of Sciences (PraemiumAcademie)
  4. International Max-Planck Research School
  5. Academy of Sciences [Z40550506]

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Pairing of guanidinium moieties in water is explored by molecular dynamics simulations of short arginine-rich peptides and ab initio calculations of a pair of guanidinium ions in water clusters of increasing size. Molecular dynamics simulations show that, in an aqueous environment, the diarginine guanidinium like-charged ion pairing is sterically hindered, whereas in the Arg-Ala-Arg tripeptide, this pairing is significant. This result is supported by the survey of protein structure databases, where it is found that stacked arginine pairs in dipeptide fragments exist solely as being imposed by the protein structure. In contrast, when two arginines are separated by a single amino acid, their guanidinium groups can freely approach each other and they frequently form stacked pairs. Molecular dynamics simulations results are also supported by ab initio calculations, which show stabilization of stacked guanidinium pairs in sufficiently large water clusters.

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