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Pierced Lasso Bundles Are a New Class of Knot-like Motifs

A four-helix bundle is a well-characterized motif often used as a target for designed pharmaceutical therapeutics and nutritional supplements. Recently, we discovered a new structural complexity within this motif created by a disulphide bridge in the long-chain helical bundle cytokine leptin. When o...

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Autores principales: Haglund, Ellinor, Sulkowska, Joanna I., Noel, Jeffrey K., Lammert, Heiko, Onuchic, José N., Jennings, Patricia A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063663/
https://www.ncbi.nlm.nih.gov/pubmed/24945798
http://dx.doi.org/10.1371/journal.pcbi.1003613
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author Haglund, Ellinor
Sulkowska, Joanna I.
Noel, Jeffrey K.
Lammert, Heiko
Onuchic, José N.
Jennings, Patricia A.
author_facet Haglund, Ellinor
Sulkowska, Joanna I.
Noel, Jeffrey K.
Lammert, Heiko
Onuchic, José N.
Jennings, Patricia A.
author_sort Haglund, Ellinor
collection PubMed
description A four-helix bundle is a well-characterized motif often used as a target for designed pharmaceutical therapeutics and nutritional supplements. Recently, we discovered a new structural complexity within this motif created by a disulphide bridge in the long-chain helical bundle cytokine leptin. When oxidized, leptin contains a disulphide bridge creating a covalent-loop through which part of the polypeptide chain is threaded (as seen in knotted proteins). We explored whether other proteins contain a similar intriguing knot-like structure as in leptin and discovered 11 structurally homologous proteins in the PDB. We call this new helical family class the Pierced Lasso Bundle (PLB) and the knot-like threaded structural motif a Pierced Lasso (PL). In the current study, we use structure-based simulation to investigate the threading/folding mechanisms for all the PLBs along with three unthreaded homologs as the covalent loop (or lasso) in leptin is important in folding dynamics and activity. We find that the presence of a small covalent loop leads to a mechanism where structural elements slipknot to thread through the covalent loop. Larger loops use a piercing mechanism where the free terminal plugs through the covalent loop. Remarkably, the position of the loop as well as its size influences the native state dynamics, which can impact receptor binding and biological activity. This previously unrecognized complexity of knot-like proteins within the helical bundle family comprises a completely new class within the knot family, and the hidden complexity we unraveled in the PLBs is expected to be found in other protein structures outside the four-helix bundles. The insights gained here provide critical new elements for future investigation of this emerging class of proteins, where function and the energetic landscape can be controlled by hidden topology, and should be take into account in ab initio predictions of newly identified protein targets.
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spelling pubmed-40636632014-06-25 Pierced Lasso Bundles Are a New Class of Knot-like Motifs Haglund, Ellinor Sulkowska, Joanna I. Noel, Jeffrey K. Lammert, Heiko Onuchic, José N. Jennings, Patricia A. PLoS Comput Biol Research Article A four-helix bundle is a well-characterized motif often used as a target for designed pharmaceutical therapeutics and nutritional supplements. Recently, we discovered a new structural complexity within this motif created by a disulphide bridge in the long-chain helical bundle cytokine leptin. When oxidized, leptin contains a disulphide bridge creating a covalent-loop through which part of the polypeptide chain is threaded (as seen in knotted proteins). We explored whether other proteins contain a similar intriguing knot-like structure as in leptin and discovered 11 structurally homologous proteins in the PDB. We call this new helical family class the Pierced Lasso Bundle (PLB) and the knot-like threaded structural motif a Pierced Lasso (PL). In the current study, we use structure-based simulation to investigate the threading/folding mechanisms for all the PLBs along with three unthreaded homologs as the covalent loop (or lasso) in leptin is important in folding dynamics and activity. We find that the presence of a small covalent loop leads to a mechanism where structural elements slipknot to thread through the covalent loop. Larger loops use a piercing mechanism where the free terminal plugs through the covalent loop. Remarkably, the position of the loop as well as its size influences the native state dynamics, which can impact receptor binding and biological activity. This previously unrecognized complexity of knot-like proteins within the helical bundle family comprises a completely new class within the knot family, and the hidden complexity we unraveled in the PLBs is expected to be found in other protein structures outside the four-helix bundles. The insights gained here provide critical new elements for future investigation of this emerging class of proteins, where function and the energetic landscape can be controlled by hidden topology, and should be take into account in ab initio predictions of newly identified protein targets. Public Library of Science 2014-06-19 /pmc/articles/PMC4063663/ /pubmed/24945798 http://dx.doi.org/10.1371/journal.pcbi.1003613 Text en © 2014 Haglund et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Haglund, Ellinor
Sulkowska, Joanna I.
Noel, Jeffrey K.
Lammert, Heiko
Onuchic, José N.
Jennings, Patricia A.
Pierced Lasso Bundles Are a New Class of Knot-like Motifs
title Pierced Lasso Bundles Are a New Class of Knot-like Motifs
title_full Pierced Lasso Bundles Are a New Class of Knot-like Motifs
title_fullStr Pierced Lasso Bundles Are a New Class of Knot-like Motifs
title_full_unstemmed Pierced Lasso Bundles Are a New Class of Knot-like Motifs
title_short Pierced Lasso Bundles Are a New Class of Knot-like Motifs
title_sort pierced lasso bundles are a new class of knot-like motifs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4063663/
https://www.ncbi.nlm.nih.gov/pubmed/24945798
http://dx.doi.org/10.1371/journal.pcbi.1003613
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