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Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane

Myoglobin (Mb) interaction with the outer mitochondrial membrane (OMM) promotes oxygen (O(2)) release. However, comprehensive molecular details on specific contact regions of the OMM with oxygenated (oxy-) and deoxygenated (deoxy-)Mb are missing. We used molecular dynamics (MD) simulations to explor...

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Autores principales: Anishkin, Andriy, Adepu, Kiran Kumar, Bhandari, Dipendra, Adams, Sean H., Chintapalli, Sree V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377724/
https://www.ncbi.nlm.nih.gov/pubmed/37509174
http://dx.doi.org/10.3390/biom13071138
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author Anishkin, Andriy
Adepu, Kiran Kumar
Bhandari, Dipendra
Adams, Sean H.
Chintapalli, Sree V.
author_facet Anishkin, Andriy
Adepu, Kiran Kumar
Bhandari, Dipendra
Adams, Sean H.
Chintapalli, Sree V.
author_sort Anishkin, Andriy
collection PubMed
description Myoglobin (Mb) interaction with the outer mitochondrial membrane (OMM) promotes oxygen (O(2)) release. However, comprehensive molecular details on specific contact regions of the OMM with oxygenated (oxy-) and deoxygenated (deoxy-)Mb are missing. We used molecular dynamics (MD) simulations to explore the interaction of oxy- and deoxy-Mb with the membrane lipids of the OMM in two lipid compositions: (a) a typical whole membrane on average, and (b) specifically the cardiolipin-enriched cristae region (contact site). Unrestrained relaxations showed that on average, both the oxy- and deoxy-Mb established more stable contacts with the lipids typical of the cristae contact site, then with those of the average OMM. However, in steered detachment simulations, deoxy-Mb clung more tightly to the average OMM, and oxy-Mb strongly preferred the contact sites of the OMM. The MD simulation analysis further indicated that a non-specific binding, mediated by local electrostatic interactions, existed between charged or polar groups of Mb and the membrane, for stable interaction. To the best of our knowledge, this is the first computational study providing the molecular details of the direct Mb–mitochondria interaction that assisted in distinguishing the preferred localization of oxy- and deoxy-Mb on the OMM. Our findings support the existing experimental evidence on Mb–mitochondrial association and shed more insights on Mb-mediated O(2) transport for cellular bioenergetics.
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spelling pubmed-103777242023-07-29 Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane Anishkin, Andriy Adepu, Kiran Kumar Bhandari, Dipendra Adams, Sean H. Chintapalli, Sree V. Biomolecules Article Myoglobin (Mb) interaction with the outer mitochondrial membrane (OMM) promotes oxygen (O(2)) release. However, comprehensive molecular details on specific contact regions of the OMM with oxygenated (oxy-) and deoxygenated (deoxy-)Mb are missing. We used molecular dynamics (MD) simulations to explore the interaction of oxy- and deoxy-Mb with the membrane lipids of the OMM in two lipid compositions: (a) a typical whole membrane on average, and (b) specifically the cardiolipin-enriched cristae region (contact site). Unrestrained relaxations showed that on average, both the oxy- and deoxy-Mb established more stable contacts with the lipids typical of the cristae contact site, then with those of the average OMM. However, in steered detachment simulations, deoxy-Mb clung more tightly to the average OMM, and oxy-Mb strongly preferred the contact sites of the OMM. The MD simulation analysis further indicated that a non-specific binding, mediated by local electrostatic interactions, existed between charged or polar groups of Mb and the membrane, for stable interaction. To the best of our knowledge, this is the first computational study providing the molecular details of the direct Mb–mitochondria interaction that assisted in distinguishing the preferred localization of oxy- and deoxy-Mb on the OMM. Our findings support the existing experimental evidence on Mb–mitochondrial association and shed more insights on Mb-mediated O(2) transport for cellular bioenergetics. MDPI 2023-07-17 /pmc/articles/PMC10377724/ /pubmed/37509174 http://dx.doi.org/10.3390/biom13071138 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Anishkin, Andriy
Adepu, Kiran Kumar
Bhandari, Dipendra
Adams, Sean H.
Chintapalli, Sree V.
Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane
title Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane
title_full Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane
title_fullStr Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane
title_full_unstemmed Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane
title_short Computational Analysis Reveals Unique Binding Patterns of Oxygenated and Deoxygenated Myoglobin to the Outer Mitochondrial Membrane
title_sort computational analysis reveals unique binding patterns of oxygenated and deoxygenated myoglobin to the outer mitochondrial membrane
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10377724/
https://www.ncbi.nlm.nih.gov/pubmed/37509174
http://dx.doi.org/10.3390/biom13071138
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