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ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments

As an early visitor to the injured loci, neutrophil-derived human Myeloperoxidase (hMPO) offers an attractive protein target to modulate the inflammation of the host tissue through suitable inhibitors. We describe a novel methodology of using low temperature ESR spectroscopy (6 K) and FAST™ technolo...

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Autores principales: Chavali, Balagopalakrishna, Masquelin, Thierry, Nilges, Mark J., Timm, David E., Stout, Stephanie L., Matter, William F., Jin, Najia, Jadhav, Prabhakar K., Deng, Gary G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Vienna 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4515242/
https://www.ncbi.nlm.nih.gov/pubmed/26224994
http://dx.doi.org/10.1007/s00723-015-0698-8
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author Chavali, Balagopalakrishna
Masquelin, Thierry
Nilges, Mark J.
Timm, David E.
Stout, Stephanie L.
Matter, William F.
Jin, Najia
Jadhav, Prabhakar K.
Deng, Gary G.
author_facet Chavali, Balagopalakrishna
Masquelin, Thierry
Nilges, Mark J.
Timm, David E.
Stout, Stephanie L.
Matter, William F.
Jin, Najia
Jadhav, Prabhakar K.
Deng, Gary G.
author_sort Chavali, Balagopalakrishna
collection PubMed
description As an early visitor to the injured loci, neutrophil-derived human Myeloperoxidase (hMPO) offers an attractive protein target to modulate the inflammation of the host tissue through suitable inhibitors. We describe a novel methodology of using low temperature ESR spectroscopy (6 K) and FAST™ technology to screen a diverse series of small molecules that inhibit the peroxidase function through reversible binding to the native state of MPO. Our initial efforts to profile molecules on the inhibition of MPO-initiated nitration of the Apo-A1 peptide (AEYHAKATEHL) assay showed several potent (with sub-micro molar IC50s) but spurious inhibitors that either do not bind to the heme pocket in the enzyme or retain high (>50 %) anti oxidant potential. Such molecules when taken forward for X-ray did not yield inhibitor-bound co-crystals. We then used ESR to confirm direct binding to the native state enzyme, by measuring the binding-induced shift in the electronic parameter g to rank order the molecules. Molecules with a higher rank order—those with g-shift R(relative) ≥15—yielded well-formed protein-bound crystals (n = 33 structures). The co-crystal structure with the LSN217331 inhibitor reveals that the chlorophenyl group projects away from the heme along the edges of the Phe366 and Phe407 side chain phenyl rings thereby sterically restricting the access to the heme by the substrates like H(2)O(2). Both ESR and antioxidant screens were used to derive the mechanism of action (reversibility, competitive substrate inhibition, and percent antioxidant potential). In conclusion, our results point to a viable path forward to target the native state of MPO to tame local inflammation.
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spelling pubmed-45152422015-07-27 ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments Chavali, Balagopalakrishna Masquelin, Thierry Nilges, Mark J. Timm, David E. Stout, Stephanie L. Matter, William F. Jin, Najia Jadhav, Prabhakar K. Deng, Gary G. Appl Magn Reson Article As an early visitor to the injured loci, neutrophil-derived human Myeloperoxidase (hMPO) offers an attractive protein target to modulate the inflammation of the host tissue through suitable inhibitors. We describe a novel methodology of using low temperature ESR spectroscopy (6 K) and FAST™ technology to screen a diverse series of small molecules that inhibit the peroxidase function through reversible binding to the native state of MPO. Our initial efforts to profile molecules on the inhibition of MPO-initiated nitration of the Apo-A1 peptide (AEYHAKATEHL) assay showed several potent (with sub-micro molar IC50s) but spurious inhibitors that either do not bind to the heme pocket in the enzyme or retain high (>50 %) anti oxidant potential. Such molecules when taken forward for X-ray did not yield inhibitor-bound co-crystals. We then used ESR to confirm direct binding to the native state enzyme, by measuring the binding-induced shift in the electronic parameter g to rank order the molecules. Molecules with a higher rank order—those with g-shift R(relative) ≥15—yielded well-formed protein-bound crystals (n = 33 structures). The co-crystal structure with the LSN217331 inhibitor reveals that the chlorophenyl group projects away from the heme along the edges of the Phe366 and Phe407 side chain phenyl rings thereby sterically restricting the access to the heme by the substrates like H(2)O(2). Both ESR and antioxidant screens were used to derive the mechanism of action (reversibility, competitive substrate inhibition, and percent antioxidant potential). In conclusion, our results point to a viable path forward to target the native state of MPO to tame local inflammation. Springer Vienna 2015-05-19 2015 /pmc/articles/PMC4515242/ /pubmed/26224994 http://dx.doi.org/10.1007/s00723-015-0698-8 Text en © The Author(s) 2015 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Article
Chavali, Balagopalakrishna
Masquelin, Thierry
Nilges, Mark J.
Timm, David E.
Stout, Stephanie L.
Matter, William F.
Jin, Najia
Jadhav, Prabhakar K.
Deng, Gary G.
ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments
title ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments
title_full ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments
title_fullStr ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments
title_full_unstemmed ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments
title_short ESR and X-ray Structure Investigations on the Binding and Mechanism of Inhibition of the Native State of Myeloperoxidase with Low Molecular Weight Fragments
title_sort esr and x-ray structure investigations on the binding and mechanism of inhibition of the native state of myeloperoxidase with low molecular weight fragments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4515242/
https://www.ncbi.nlm.nih.gov/pubmed/26224994
http://dx.doi.org/10.1007/s00723-015-0698-8
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