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Conformational profile of a proline-arginine hybrid.


ABSTRACT: The intrinsic conformational preferences of a new nonproteinogenic amino acid have been explored by computational methods. This tailored molecule, named ((?)Pro)Arg, is conceived as a replacement for arginine in bioactive peptides when the stabilization of folded turn-like conformations is required. The new residue features a proline skeleton that bears the guanidilated side chain of arginine at the C(?) position of the five-membered pyrrolidine ring, in either a cis or a trans orientation with respect to the carboxylic acid. The conformational profiles of the N-acetyl-N'-methylamide derivatives of the cis and trans isomers of ((?)Pro)Arg have been examined in the gas phase and in solution by B3LYP/6-31+G(d,p) calculations and molecular dynamics simulations. The main conformational features of both isomers represent a balance between geometric restrictions imposed by the five-membered pyrrolidine ring and the ability of the guanidilated side chain to interact with the backbone through hydrogen bonds. Thus, both cis- and trans-((?)Pro)Arg exhibit a preference for the ?(L) conformation as a consequence of the interactions established between the guanidinium moiety and the main-chain amide groups.

SUBMITTER: Revilla-Lopez G 

PROVIDER: S-EPMC2997958 | biostudies-literature | 2010 Oct

REPOSITORIES: biostudies-literature

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Conformational profile of a proline-arginine hybrid.

Revilla-López Guillermo G   Jiménez Ana I AI   Cativiela Carlos C   Nussinov Ruth R   Alemán Carlos C   Zanuy David D  

Journal of chemical information and modeling 20101001 10


The intrinsic conformational preferences of a new nonproteinogenic amino acid have been explored by computational methods. This tailored molecule, named ((β)Pro)Arg, is conceived as a replacement for arginine in bioactive peptides when the stabilization of folded turn-like conformations is required. The new residue features a proline skeleton that bears the guanidilated side chain of arginine at the C(β) position of the five-membered pyrrolidine ring, in either a cis or a trans orientation with  ...[more]

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