4.8 Article

Solvent dependence of PII conformation in model alanine peptides

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 126, Issue 46, Pages 15141-15150

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ja047594g

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Funding

  1. NIBIB NIH HHS [EB02803] Funding Source: Medline
  2. NIGMS NIH HHS [GM22994] Funding Source: Medline

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Alanine residues in two model peptides, the pentapeptide AcGGAGGNH(2) and the 11mer ACO(2)A(7)O(2)NH(2), have been reported to have substantial PII conformation in water. The PII structure in both peptides is sensitive to solvent. In the presence of the organic solvent TFE, the conformation of the pentamer changes from PII to internally II-bonded gamma or beta turns, while the chain with seven alanines forms alpha helix. The PII structure in the 11mer is more stable than that in the shorter peptide as the TFE concentration increases. For the pentamer, a comparison of short-chain aliphatic alcohols to water shows that the PII content decreases in the order water > methanol > ethanol > 2-propanol, linearly according to empirical scales of solvent polarity. Thus, depending on the extent of local solvation as folding progresses, the peptide backbone as modeled by alanine oligomers; shifts from PII to internally H-bonded (gamma or beta turn) conformations and to alpha helix in longer segments. On the other hand, the PII content of AcO(2)A(7)O(2)NH(2) increases significantly in the presence of guanidine, as does that of oligoproline peptides, while detergent sodium dodecyl sulfate (SDS) favors alpha helix in this peptide. The shorter peptide does not show a parallel increase in PII with guanidine.

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