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The protein folding rate and the geometry and topology of the native state
by
Panagiotou, Eleni
, Wang, Jason
in
631/337/470
/ 639/705/1041
/ 639/705/1045
/ Humanities and Social Sciences
/ multidisciplinary
/ Protein Conformation
/ Protein Folding
/ Protein structure
/ Protein Structure, Secondary
/ Proteins
/ Proteins - chemistry
/ Science
/ Science (multidisciplinary)
/ Secondary structure
/ Topology
2022
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The protein folding rate and the geometry and topology of the native state
by
Panagiotou, Eleni
, Wang, Jason
in
631/337/470
/ 639/705/1041
/ 639/705/1045
/ Humanities and Social Sciences
/ multidisciplinary
/ Protein Conformation
/ Protein Folding
/ Protein structure
/ Protein Structure, Secondary
/ Proteins
/ Proteins - chemistry
/ Science
/ Science (multidisciplinary)
/ Secondary structure
/ Topology
2022
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Do you wish to request the book?
The protein folding rate and the geometry and topology of the native state
by
Panagiotou, Eleni
, Wang, Jason
in
631/337/470
/ 639/705/1041
/ 639/705/1045
/ Humanities and Social Sciences
/ multidisciplinary
/ Protein Conformation
/ Protein Folding
/ Protein structure
/ Protein Structure, Secondary
/ Proteins
/ Proteins - chemistry
/ Science
/ Science (multidisciplinary)
/ Secondary structure
/ Topology
2022
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The protein folding rate and the geometry and topology of the native state
Journal Article
The protein folding rate and the geometry and topology of the native state
2022
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Overview
Proteins fold in 3-dimensional conformations which are important for their function. Characterizing the global conformation of proteins rigorously and separating secondary structure effects from topological effects is a challenge. New developments in applied knot theory allow to characterize the topological characteristics of proteins (knotted or not). By analyzing a small set of two-state and multi-state proteins with no knots or slipknots, our results show that 95.4% of the analyzed proteins have non-trivial topological characteristics, as reflected by the second Vassiliev measure, and that the logarithm of the experimental protein folding rate depends on both the local geometry and the topology of the protein’s native state.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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