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In Silico Conformational Analysis of the Short-Sequence Hypomurocin A Peptides
Author(s) -
Zoltán Násztor,
János Horváth,
Balázs Leitgeb
Publication year - 2015
Publication title -
international journal of peptides
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.239
H-Index - 25
eISSN - 1687-9775
pISSN - 1687-9767
DOI - 10.1155/2015/281065
Subject(s) - conformational isomerism , intramolecular force , crystallography , chemistry , sequence (biology) , side chain , tetrapeptide , molecule , stereochemistry , peptide , biochemistry , polymer , organic chemistry
In this theoretical study, a conformational analysis was performed on short-sequence hypomurocin A peptides, in order to identify their characteristic structural properties. For each hypomurocin A molecule, not only the backbone conformations, but also the side-chain conformations were examined. The results indicated that certain tetrapeptide units could be characterized by types I and III β -turn structures, and considering the helical conformations, it could be concluded that the hypomurocin A peptides showed a preference for the 3 10 -helical structure over the α -helical structure. Beside the backbone conformations, the side-chain conformations were investigated, and the preferred rotamer states of the side-chains of amino acids were determined. Furthermore, the occurrence of i ← i + 3 and i ← i + 4 intramolecular H-bonds was studied, which could play a role in the structural stabilization of β -turns and helical conformations. On the whole, our theoretical study supplied a comprehensive characterization of the three-dimensional structure of short-sequence hypomurocin A peptides.

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