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Assessment of Immunologically Relevant Dynamic Tertiary Structural Features of the HIV-1 V3 Loop Crown R2 Sequence by ab initio Folding
Published on: September 15, 2010
Dominant folding pathways of a peptide chain from ab initio quantum-mechanical simulations
Silvio a Beccara1, Pietro Faccioli, Marcello Sega
1Dipartimento di Fisica Università degli Studi di Trento, Via Sommarive 14, I-38050 Povo, Trento, Italy.
Abstract:
Using the dominant reaction pathways method, we perform an ab initio quantum-mechanical simulation of a conformational transition of a peptide chain. The method we propose makes it possible to investigate the out-of-equilibrium dynamics of these systems, without resorting to an empirical representation of the molecular force field. It also allows to study rare transitions involving rearrangements in the electronic structure. By comparing the results of the ab initio simulation with those obtained by employing a standard force field, we discuss its capability to describe the nonequilibrium dynamics of conformational transitions.
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