Volume 32, Issue 2 pp. 161-172
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Molecular dynamics study of the conformational behavior of a representative elastin building block: Boc-Gly-Val-Gly-Gly-Leu-Ome

F. Lelj

Corresponding Author

F. Lelj

Dipartimento di Chimica, Universitá degli Studi della Basilicata, Via N. Sauro 85, 1-85100 Potenza, Italy

Dipartimento di Chimica, Universitá degli Studi della Basilicata, Via N. Sauro 85, 1-85100 Potenza, ItalySearch for more papers by this author
A. M. Tamburro

A. M. Tamburro

Dipartimento di Chimica, Universitá degli Studi della Basilicata, Via N. Sauro 85, 1-85100 Potenza, Italy

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V. Villan

V. Villan

Dipartimento di Chimica, Universitá degli Studi della Basilicata, Via N. Sauro 85, 1-85100 Potenza, Italy

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P. Grimaldi

P. Grimaldi

Dipartimento di Chimica, Universitá degli Studi della Basilicata, Via N. Sauro 85, 1-85100 Potenza, Italy

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V. Guantieri

V. Guantieri

Dipartimento di Chimica Inorganica, Metallorganica ed Analitica, Universitá di Padova, 1-35100 Padova, Italy

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First published: February 1992
Citations: 47

Abstract

The conformational behavior of the synthetic peptide, Boc-Gly-Val-Gly-Gly-Leu-OMe, containing the X-Gly-Gly and Gly-Gly-X (X = Val or Leu) repeating sequences and constituting a fragment of elastin was investigated by molecular mechanics and molecular dynamics (MD) simulation. The results suggest that, irrespective of the approximations used, the molecule shows a manifold of low energy conformations characterized by γ-turns and type II β-turns. Furthermore, MD simulations point out a conformational floppiness due to very low barriers between different conformations. Experimental CD measurements in a virtually apolar medium (dioxane − ε = 2.209), which better mimics the vacuum conditions of the simulation, support the theoretical results. The general emerging picture, indicating the molecule as characterized by a combination of flexibility with conformational preferences, is in agreement with previous experimental findings and enriches of new aspects the description of the microscopic behavior of this molecule suggesting more detailed interpretation of previous data.

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