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Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor

A recent rational approach to anti-malarial drug design is characterized as “covalent biotherapy” involves linking of two molecules with individual intrinsic activity into a single agent, thus packaging dual activity into a single hybrid molecule. In view of this background and reported anti malaria...

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Autores principales: Mahapatra, Rajani Kanta, Behera, Niranjan, Naik, Pradeep Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biomedical Informatics 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3346024/
https://www.ncbi.nlm.nih.gov/pubmed/22570518
http://dx.doi.org/10.6026/97320630008369
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author Mahapatra, Rajani Kanta
Behera, Niranjan
Naik, Pradeep Kumar
author_facet Mahapatra, Rajani Kanta
Behera, Niranjan
Naik, Pradeep Kumar
author_sort Mahapatra, Rajani Kanta
collection PubMed
description A recent rational approach to anti-malarial drug design is characterized as “covalent biotherapy” involves linking of two molecules with individual intrinsic activity into a single agent, thus packaging dual activity into a single hybrid molecule. In view of this background and reported anti malaria synergism between artemisinin and quinine; we describe the computer-assisted docking to predict molecular interaction and binding affinity of Artemisinin-Quinine hybrid and its derivatives with the intraparasitic haeme group of human haemoglobin. Starting from a crystallographic structure of Fe-protoporphyrin-IX, binding modes, orientation of peroxide bridge (Fe-O distance), docking score and interaction energy are predicted using the docking molecular mechanics based on generalized Born/surface area (MM-GBSA) solvation model. Seven new ligands were identified with a favourable glide score (XP score) and binding free energy (ΔG) with reference to the experimental structure from a data set of thirty four hybrid derivatives. The result shows the conformational property of the drug-receptor interaction and may lead to rational design and synthesis of improved potent artemisinin based hybrid antimalarial that target haemozoin formation.
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spelling pubmed-33460242012-05-08 Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor Mahapatra, Rajani Kanta Behera, Niranjan Naik, Pradeep Kumar Bioinformation Hypothesis A recent rational approach to anti-malarial drug design is characterized as “covalent biotherapy” involves linking of two molecules with individual intrinsic activity into a single agent, thus packaging dual activity into a single hybrid molecule. In view of this background and reported anti malaria synergism between artemisinin and quinine; we describe the computer-assisted docking to predict molecular interaction and binding affinity of Artemisinin-Quinine hybrid and its derivatives with the intraparasitic haeme group of human haemoglobin. Starting from a crystallographic structure of Fe-protoporphyrin-IX, binding modes, orientation of peroxide bridge (Fe-O distance), docking score and interaction energy are predicted using the docking molecular mechanics based on generalized Born/surface area (MM-GBSA) solvation model. Seven new ligands were identified with a favourable glide score (XP score) and binding free energy (ΔG) with reference to the experimental structure from a data set of thirty four hybrid derivatives. The result shows the conformational property of the drug-receptor interaction and may lead to rational design and synthesis of improved potent artemisinin based hybrid antimalarial that target haemozoin formation. Biomedical Informatics 2012-04-30 /pmc/articles/PMC3346024/ /pubmed/22570518 http://dx.doi.org/10.6026/97320630008369 Text en © 2012 Biomedical Informatics This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.
spellingShingle Hypothesis
Mahapatra, Rajani Kanta
Behera, Niranjan
Naik, Pradeep Kumar
Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor
title Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor
title_full Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor
title_fullStr Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor
title_full_unstemmed Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor
title_short Molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with Fe-protoporphyrin-IX as a putative receptor
title_sort molecular modeling and evaluation of binding mode and affinity of artemisinin-quinine hybrid and its congeners with fe-protoporphyrin-ix as a putative receptor
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3346024/
https://www.ncbi.nlm.nih.gov/pubmed/22570518
http://dx.doi.org/10.6026/97320630008369
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