Current Approaches in Supersecondary Structures Investigation
Proteins expressed during the cell cycle determine cell function, topology, and responses to environmental influences. The development and improvement of experimental methods in the field of structural biology provide valuable information about the structure and functions of individual proteins. Thi...
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MDPI AG
2021
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oai:doaj.org-article:6815411cd22548e08582ec036fe5152b2021-11-11T17:18:03ZCurrent Approaches in Supersecondary Structures Investigation10.3390/ijms2221118791422-00671661-6596https://doaj.org/article/6815411cd22548e08582ec036fe5152b2021-11-01T00:00:00Zhttps://www.mdpi.com/1422-0067/22/21/11879https://doaj.org/toc/1661-6596https://doaj.org/toc/1422-0067Proteins expressed during the cell cycle determine cell function, topology, and responses to environmental influences. The development and improvement of experimental methods in the field of structural biology provide valuable information about the structure and functions of individual proteins. This work is devoted to the study of supersecondary structures of proteins and determination of their structural motifs, description of experimental methods for their detection, databases, and repositories for storage, as well as methods of molecular dynamics research. The interest in the study of supersecondary structures in proteins is due to their autonomous stability outside the protein globule, which makes it possible to study folding processes, conformational changes in protein isoforms, and aberrant proteins with high productivity.Vladimir R. RudnevLiudmila I. KulikovaKirill S. NikolskyKristina A. MalsagovaArthur T. KopylovAnna L. KayshevaMDPI AGarticlestructural motifs of proteinshelical pairsexperimental methodsdatabasesBiology (General)QH301-705.5ChemistryQD1-999ENInternational Journal of Molecular Sciences, Vol 22, Iss 11879, p 11879 (2021) |
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structural motifs of proteins helical pairs experimental methods databases Biology (General) QH301-705.5 Chemistry QD1-999 |
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structural motifs of proteins helical pairs experimental methods databases Biology (General) QH301-705.5 Chemistry QD1-999 Vladimir R. Rudnev Liudmila I. Kulikova Kirill S. Nikolsky Kristina A. Malsagova Arthur T. Kopylov Anna L. Kaysheva Current Approaches in Supersecondary Structures Investigation |
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Proteins expressed during the cell cycle determine cell function, topology, and responses to environmental influences. The development and improvement of experimental methods in the field of structural biology provide valuable information about the structure and functions of individual proteins. This work is devoted to the study of supersecondary structures of proteins and determination of their structural motifs, description of experimental methods for their detection, databases, and repositories for storage, as well as methods of molecular dynamics research. The interest in the study of supersecondary structures in proteins is due to their autonomous stability outside the protein globule, which makes it possible to study folding processes, conformational changes in protein isoforms, and aberrant proteins with high productivity. |
format |
article |
author |
Vladimir R. Rudnev Liudmila I. Kulikova Kirill S. Nikolsky Kristina A. Malsagova Arthur T. Kopylov Anna L. Kaysheva |
author_facet |
Vladimir R. Rudnev Liudmila I. Kulikova Kirill S. Nikolsky Kristina A. Malsagova Arthur T. Kopylov Anna L. Kaysheva |
author_sort |
Vladimir R. Rudnev |
title |
Current Approaches in Supersecondary Structures Investigation |
title_short |
Current Approaches in Supersecondary Structures Investigation |
title_full |
Current Approaches in Supersecondary Structures Investigation |
title_fullStr |
Current Approaches in Supersecondary Structures Investigation |
title_full_unstemmed |
Current Approaches in Supersecondary Structures Investigation |
title_sort |
current approaches in supersecondary structures investigation |
publisher |
MDPI AG |
publishDate |
2021 |
url |
https://doaj.org/article/6815411cd22548e08582ec036fe5152b |
work_keys_str_mv |
AT vladimirrrudnev currentapproachesinsupersecondarystructuresinvestigation AT liudmilaikulikova currentapproachesinsupersecondarystructuresinvestigation AT kirillsnikolsky currentapproachesinsupersecondarystructuresinvestigation AT kristinaamalsagova currentapproachesinsupersecondarystructuresinvestigation AT arthurtkopylov currentapproachesinsupersecondarystructuresinvestigation AT annalkaysheva currentapproachesinsupersecondarystructuresinvestigation |
_version_ |
1718432121435979776 |