Conformations of phenylalanine in the tripeptides AFA and GFG probed by combining MD simulations with NMR, FTIR, polarized Raman, and VCD spectroscopy

24Citations
Citations of this article
33Readers
Mendeley users who have this article in their library.
Get full text

Abstract

Conformational properties of small, flexible peptides are a matter of ongoing interest since they can be considered as models for unfolded proteins. However, the investigation of the conformations of small peptides is challenging as they are ensembles of rapidly interconverting conformers; moreover, the different methods used are prone to different approximations and errors. In order to obtain more reliable results, it is prudent to combine different techniques; here, molecular dynamics (MD) simulations together with nuclear magnetic resonance (NMR), fourier transform IR (FTIR), polarized Raman, and vibrational circular dichroism (VCD) measurements were used to study the conformational propensity of phenylalanine in the tripeptides AFA and GFG, motivated by the relevance of phenylalanine for the self-aggregation of peptides. The results of this analysis indicate that the F residue predominantly populates the β-strand (β) and polyproline II (PPII) conformations in both AFA and GFG. However, while phenylalanine exhibits a propensity for β-strand conformations in GFG (0.40 < β population < 0.69 and 0.29 < PPII population < 0.42), the substitution of terminal glycines with alanine residues induces a higher population of PPII (0.31 < β population < 0.50 and 0.37 < PPII population < 0.57). © 2010 American Chemical Society.

Cite

CITATION STYLE

APA

Pizzanelli, S., Forte, C., Monti, S., Zandomeneghi, G., Hagarman, A., Measey, T. J., & Schweitzer-Stenner, R. (2010). Conformations of phenylalanine in the tripeptides AFA and GFG probed by combining MD simulations with NMR, FTIR, polarized Raman, and VCD spectroscopy. Journal of Physical Chemistry B, 114(11), 3965–3978. https://doi.org/10.1021/jp907502n

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free