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The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective

Lactoferrin (LF) is a major natural antimicrobial agent secreted in body fluids as a natural innate immunity protein. The action and structure of LF are closely related to its iron-binding capacity with structural reporting in open and closed conformations. This study looked at how lactoferrin struc...

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Autores principales: Alhumam, Maathir N., Alhumam, Naser, Kandeel, Mahmoud
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10229236/
https://www.ncbi.nlm.nih.gov/pubmed/37260852
http://dx.doi.org/10.1155/2023/2322286
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author Alhumam, Maathir N.
Alhumam, Naser
Kandeel, Mahmoud
author_facet Alhumam, Maathir N.
Alhumam, Naser
Kandeel, Mahmoud
author_sort Alhumam, Maathir N.
collection PubMed
description Lactoferrin (LF) is a major natural antimicrobial agent secreted in body fluids as a natural innate immunity protein. The action and structure of LF are closely related to its iron-binding capacity with structural reporting in open and closed conformations. This study looked at how lactoferrin structures change in camel (cLF), bovine (bLF), and human (hLF) lactoferrin closed forms after iron is removed from their binding sites. Initially, the sequence comparison between cLF and the LFs of marine mammals, bats, and domestic animals was the most intriguing conclusion. Camel LF is revealed to be more closely related to marine animals (~80.36% identity) and bats (~79.3% identity) than to terrestrial mammal species (~75.5% identity). Results indicated that cLF was more dynamic in nature than bLF and hLF by showing higher RMSD values. The cLF is known to be half lactoferrin half transferrin; in this study, we show that there are different MD behavior of both iron-binding sites. While LF contains two lobes (C- and N-lobes), the C-lobe showed high fluctuations as N-lobe was more stable in the absence of ferric ions. The C-lobe and N-lobe of cLF react differently at physiological pH, revealing distinct molecular interactions between these components. In addition, cLF showed higher system flexibility derived from its larger RMSD, RMSF, lower intermolecular hydrogen bonds, and higher solvent accessible surface area (SASA).
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spelling pubmed-102292362023-05-31 The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective Alhumam, Maathir N. Alhumam, Naser Kandeel, Mahmoud Biomed Res Int Research Article Lactoferrin (LF) is a major natural antimicrobial agent secreted in body fluids as a natural innate immunity protein. The action and structure of LF are closely related to its iron-binding capacity with structural reporting in open and closed conformations. This study looked at how lactoferrin structures change in camel (cLF), bovine (bLF), and human (hLF) lactoferrin closed forms after iron is removed from their binding sites. Initially, the sequence comparison between cLF and the LFs of marine mammals, bats, and domestic animals was the most intriguing conclusion. Camel LF is revealed to be more closely related to marine animals (~80.36% identity) and bats (~79.3% identity) than to terrestrial mammal species (~75.5% identity). Results indicated that cLF was more dynamic in nature than bLF and hLF by showing higher RMSD values. The cLF is known to be half lactoferrin half transferrin; in this study, we show that there are different MD behavior of both iron-binding sites. While LF contains two lobes (C- and N-lobes), the C-lobe showed high fluctuations as N-lobe was more stable in the absence of ferric ions. The C-lobe and N-lobe of cLF react differently at physiological pH, revealing distinct molecular interactions between these components. In addition, cLF showed higher system flexibility derived from its larger RMSD, RMSF, lower intermolecular hydrogen bonds, and higher solvent accessible surface area (SASA). Hindawi 2023-05-23 /pmc/articles/PMC10229236/ /pubmed/37260852 http://dx.doi.org/10.1155/2023/2322286 Text en Copyright © 2023 Maathir N. Alhumam et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Alhumam, Maathir N.
Alhumam, Naser
Kandeel, Mahmoud
The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective
title The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective
title_full The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective
title_fullStr The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective
title_full_unstemmed The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective
title_short The Antimicrobial Bifunctional Camel Lactoferrin: In Silico and Molecular Dynamic Perspective
title_sort antimicrobial bifunctional camel lactoferrin: in silico and molecular dynamic perspective
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10229236/
https://www.ncbi.nlm.nih.gov/pubmed/37260852
http://dx.doi.org/10.1155/2023/2322286
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