Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity

Proteins frequently assume complex three-dimensional structures characterized by marginal thermodynamic stabilities. In this scenario, deciphering the folding code of these molecular giants with clay feet is a cumbersome task. Studies performed in last years have shown that the interplay between bac...

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Main Authors: Nicole Balasco, Luciana Esposito, Amarinder Singh Thind, Mario Rosario Guarracino, Luigi Vitagliano
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:BioMed Research International
Online Access:http://dx.doi.org/10.1155/2017/2617629
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spelling doaj-cbc0715a1ccb4528a03c4e99f98423352020-11-24T22:58:34ZengHindawi LimitedBioMed Research International2314-61332314-61412017-01-01201710.1155/2017/26176292617629Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and PlanarityNicole Balasco0Luciana Esposito1Amarinder Singh Thind2Mario Rosario Guarracino3Luigi Vitagliano4Istituto di Biostrutture e Bioimmagini, CNR, Napoli, ItalyIstituto di Biostrutture e Bioimmagini, CNR, Napoli, ItalyIstituto di Calcolo e Reti ad Alte Prestazioni, CNR, Napoli, ItalyIstituto di Calcolo e Reti ad Alte Prestazioni, CNR, Napoli, ItalyIstituto di Biostrutture e Bioimmagini, CNR, Napoli, ItalyProteins frequently assume complex three-dimensional structures characterized by marginal thermodynamic stabilities. In this scenario, deciphering the folding code of these molecular giants with clay feet is a cumbersome task. Studies performed in last years have shown that the interplay between backbone geometry and local conformation has an important impact on protein structures. Although the variability of several geometrical parameters of protein backbone has been established, the role of the structural context in determining these effects has been hitherto limited to the valence bond angle τ (NCαC). We here investigated the impact of different factors on the observed variability of backbone geometry and peptide bond planarity. These analyses corroborate the notion that the local conformation expressed in terms of (ϕ,ψ) dihedrals plays a predominant role in dictating the variability of these parameters. The impact of secondary structure is limited to bond angles which involve atoms that are usually engaged in H-bonds and, therefore, more susceptible to the structural context. Present data also show that the nature of the side chain has a significant impact on angles such as NCαCβ and CβCαC. In conclusion, our analyses strongly support the use of variability of protein backbone geometry in structure refinement, validation, and prediction.http://dx.doi.org/10.1155/2017/2617629
collection DOAJ
language English
format Article
sources DOAJ
author Nicole Balasco
Luciana Esposito
Amarinder Singh Thind
Mario Rosario Guarracino
Luigi Vitagliano
spellingShingle Nicole Balasco
Luciana Esposito
Amarinder Singh Thind
Mario Rosario Guarracino
Luigi Vitagliano
Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity
BioMed Research International
author_facet Nicole Balasco
Luciana Esposito
Amarinder Singh Thind
Mario Rosario Guarracino
Luigi Vitagliano
author_sort Nicole Balasco
title Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity
title_short Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity
title_full Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity
title_fullStr Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity
title_full_unstemmed Dissection of Factors Affecting the Variability of the Peptide Bond Geometry and Planarity
title_sort dissection of factors affecting the variability of the peptide bond geometry and planarity
publisher Hindawi Limited
series BioMed Research International
issn 2314-6133
2314-6141
publishDate 2017-01-01
description Proteins frequently assume complex three-dimensional structures characterized by marginal thermodynamic stabilities. In this scenario, deciphering the folding code of these molecular giants with clay feet is a cumbersome task. Studies performed in last years have shown that the interplay between backbone geometry and local conformation has an important impact on protein structures. Although the variability of several geometrical parameters of protein backbone has been established, the role of the structural context in determining these effects has been hitherto limited to the valence bond angle τ (NCαC). We here investigated the impact of different factors on the observed variability of backbone geometry and peptide bond planarity. These analyses corroborate the notion that the local conformation expressed in terms of (ϕ,ψ) dihedrals plays a predominant role in dictating the variability of these parameters. The impact of secondary structure is limited to bond angles which involve atoms that are usually engaged in H-bonds and, therefore, more susceptible to the structural context. Present data also show that the nature of the side chain has a significant impact on angles such as NCαCβ and CβCαC. In conclusion, our analyses strongly support the use of variability of protein backbone geometry in structure refinement, validation, and prediction.
url http://dx.doi.org/10.1155/2017/2617629
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