Analysis of conformational variation in macromolecular structural models.
Experimental conditions or the presence of interacting components can lead to variations in the structural models of macromolecules. However, the role of these factors in conformational selection is often omitted by in silico methods to extract dynamic information from protein structural models. Str...
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2012-01-01
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doaj-45d034febc244688b89dfb2ff173abe52020-11-25T01:46:30ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0177e3999310.1371/journal.pone.0039993Analysis of conformational variation in macromolecular structural models.Sandeep Kumar SrivastavaSavitha GayathriBabu A ManjasettyBalasubramanian GopalExperimental conditions or the presence of interacting components can lead to variations in the structural models of macromolecules. However, the role of these factors in conformational selection is often omitted by in silico methods to extract dynamic information from protein structural models. Structures of small peptides, considered building blocks for larger macromolecular structural models, can substantially differ in the context of a larger protein. This limitation is more evident in the case of modeling large multi-subunit macromolecular complexes using structures of the individual protein components. Here we report an analysis of variations in structural models of proteins with high sequence similarity. These models were analyzed for sequence features of the protein, the role of scaffolding segments including interacting proteins or affinity tags and the chemical components in the experimental conditions. Conformational features in these structural models could be rationalized by conformational selection events, perhaps induced by experimental conditions. This analysis was performed on a non-redundant dataset of protein structures from different SCOP classes. The sequence-conformation correlations that we note here suggest additional features that could be incorporated by in silico methods to extract dynamic information from protein structural models.http://europepmc.org/articles/PMC3392262?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sandeep Kumar Srivastava Savitha Gayathri Babu A Manjasetty Balasubramanian Gopal |
spellingShingle |
Sandeep Kumar Srivastava Savitha Gayathri Babu A Manjasetty Balasubramanian Gopal Analysis of conformational variation in macromolecular structural models. PLoS ONE |
author_facet |
Sandeep Kumar Srivastava Savitha Gayathri Babu A Manjasetty Balasubramanian Gopal |
author_sort |
Sandeep Kumar Srivastava |
title |
Analysis of conformational variation in macromolecular structural models. |
title_short |
Analysis of conformational variation in macromolecular structural models. |
title_full |
Analysis of conformational variation in macromolecular structural models. |
title_fullStr |
Analysis of conformational variation in macromolecular structural models. |
title_full_unstemmed |
Analysis of conformational variation in macromolecular structural models. |
title_sort |
analysis of conformational variation in macromolecular structural models. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2012-01-01 |
description |
Experimental conditions or the presence of interacting components can lead to variations in the structural models of macromolecules. However, the role of these factors in conformational selection is often omitted by in silico methods to extract dynamic information from protein structural models. Structures of small peptides, considered building blocks for larger macromolecular structural models, can substantially differ in the context of a larger protein. This limitation is more evident in the case of modeling large multi-subunit macromolecular complexes using structures of the individual protein components. Here we report an analysis of variations in structural models of proteins with high sequence similarity. These models were analyzed for sequence features of the protein, the role of scaffolding segments including interacting proteins or affinity tags and the chemical components in the experimental conditions. Conformational features in these structural models could be rationalized by conformational selection events, perhaps induced by experimental conditions. This analysis was performed on a non-redundant dataset of protein structures from different SCOP classes. The sequence-conformation correlations that we note here suggest additional features that could be incorporated by in silico methods to extract dynamic information from protein structural models. |
url |
http://europepmc.org/articles/PMC3392262?pdf=render |
work_keys_str_mv |
AT sandeepkumarsrivastava analysisofconformationalvariationinmacromolecularstructuralmodels AT savithagayathri analysisofconformationalvariationinmacromolecularstructuralmodels AT babuamanjasetty analysisofconformationalvariationinmacromolecularstructuralmodels AT balasubramaniangopal analysisofconformationalvariationinmacromolecularstructuralmodels |
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1725019067087060992 |