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Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant

Myelin protein P2 is a fatty acid-binding structural component of the myelin sheath in the peripheral nervous system, and its function is related to its membrane binding capacity. Here, the link between P2 protein dynamics and structure and function was studied using elastic incoherent neutron scatt...

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Autores principales: Laulumaa, Saara, Nieminen, Tuomo, Lehtimäki, Mari, Aggarwal, Shweta, Simons, Mikael, Koza, Michael M., Vattulainen, Ilpo, Kursula, Petri, Natali, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4466134/
https://www.ncbi.nlm.nih.gov/pubmed/26068118
http://dx.doi.org/10.1371/journal.pone.0128954
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author Laulumaa, Saara
Nieminen, Tuomo
Lehtimäki, Mari
Aggarwal, Shweta
Simons, Mikael
Koza, Michael M.
Vattulainen, Ilpo
Kursula, Petri
Natali, Francesca
author_facet Laulumaa, Saara
Nieminen, Tuomo
Lehtimäki, Mari
Aggarwal, Shweta
Simons, Mikael
Koza, Michael M.
Vattulainen, Ilpo
Kursula, Petri
Natali, Francesca
author_sort Laulumaa, Saara
collection PubMed
description Myelin protein P2 is a fatty acid-binding structural component of the myelin sheath in the peripheral nervous system, and its function is related to its membrane binding capacity. Here, the link between P2 protein dynamics and structure and function was studied using elastic incoherent neutron scattering (EINS). The P38G mutation, at the hinge between the β barrel and the α-helical lid, increased the lipid stacking capacity of human P2 in vitro, and the mutated protein was also functional in cultured cells. The P38G mutation did not change the overall structure of the protein. For a deeper insight into P2 structure-function relationships, information on protein dynamics in the 10 ps to 1 ns time scale was obtained using EINS. Values of mean square displacements mainly from protein H atoms were extracted for wild-type P2 and the P38G mutant and compared. Our results show that at physiological temperatures, the P38G mutant is more dynamic than the wild-type P2 protein, especially on a slow 1-ns time scale. Molecular dynamics simulations confirmed the enhanced dynamics of the mutant variant, especially within the portal region in the presence of bound fatty acid. The increased softness of the hinge mutant of human myelin P2 protein is likely related to an enhanced flexibility of the portal region of this fatty acid-binding protein, as well as to its interactions with the lipid bilayer surface requiring conformational adaptations.
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spelling pubmed-44661342015-06-25 Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant Laulumaa, Saara Nieminen, Tuomo Lehtimäki, Mari Aggarwal, Shweta Simons, Mikael Koza, Michael M. Vattulainen, Ilpo Kursula, Petri Natali, Francesca PLoS One Research Article Myelin protein P2 is a fatty acid-binding structural component of the myelin sheath in the peripheral nervous system, and its function is related to its membrane binding capacity. Here, the link between P2 protein dynamics and structure and function was studied using elastic incoherent neutron scattering (EINS). The P38G mutation, at the hinge between the β barrel and the α-helical lid, increased the lipid stacking capacity of human P2 in vitro, and the mutated protein was also functional in cultured cells. The P38G mutation did not change the overall structure of the protein. For a deeper insight into P2 structure-function relationships, information on protein dynamics in the 10 ps to 1 ns time scale was obtained using EINS. Values of mean square displacements mainly from protein H atoms were extracted for wild-type P2 and the P38G mutant and compared. Our results show that at physiological temperatures, the P38G mutant is more dynamic than the wild-type P2 protein, especially on a slow 1-ns time scale. Molecular dynamics simulations confirmed the enhanced dynamics of the mutant variant, especially within the portal region in the presence of bound fatty acid. The increased softness of the hinge mutant of human myelin P2 protein is likely related to an enhanced flexibility of the portal region of this fatty acid-binding protein, as well as to its interactions with the lipid bilayer surface requiring conformational adaptations. Public Library of Science 2015-06-11 /pmc/articles/PMC4466134/ /pubmed/26068118 http://dx.doi.org/10.1371/journal.pone.0128954 Text en © 2015 Laulumaa 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
Laulumaa, Saara
Nieminen, Tuomo
Lehtimäki, Mari
Aggarwal, Shweta
Simons, Mikael
Koza, Michael M.
Vattulainen, Ilpo
Kursula, Petri
Natali, Francesca
Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant
title Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant
title_full Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant
title_fullStr Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant
title_full_unstemmed Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant
title_short Dynamics of the Peripheral Membrane Protein P2 from Human Myelin Measured by Neutron Scattering—A Comparison between Wild-Type Protein and a Hinge Mutant
title_sort dynamics of the peripheral membrane protein p2 from human myelin measured by neutron scattering—a comparison between wild-type protein and a hinge mutant
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4466134/
https://www.ncbi.nlm.nih.gov/pubmed/26068118
http://dx.doi.org/10.1371/journal.pone.0128954
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