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Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs

Calcineurin is a critical enzyme in fungal pathogenesis and antifungal drug tolerance and, therefore, an attractive antifungal target. Current clinically accessible calcineurin inhibitors, such as FK506, are immunosuppressive to humans, so exploiting calcineurin inhibition as an antifungal strategy...

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Autores principales: Gobeil, Sophie M.-C., Bobay, Benjamin G., Juvvadi, Praveen R., Cole, D. Christopher, Heitman, Joseph, Steinbach, William J., Venters, Ronald A., Spicer, Leonard D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8609367/
https://www.ncbi.nlm.nih.gov/pubmed/34809463
http://dx.doi.org/10.1128/mBio.03000-21
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author Gobeil, Sophie M.-C.
Bobay, Benjamin G.
Juvvadi, Praveen R.
Cole, D. Christopher
Heitman, Joseph
Steinbach, William J.
Venters, Ronald A.
Spicer, Leonard D.
author_facet Gobeil, Sophie M.-C.
Bobay, Benjamin G.
Juvvadi, Praveen R.
Cole, D. Christopher
Heitman, Joseph
Steinbach, William J.
Venters, Ronald A.
Spicer, Leonard D.
author_sort Gobeil, Sophie M.-C.
collection PubMed
description Calcineurin is a critical enzyme in fungal pathogenesis and antifungal drug tolerance and, therefore, an attractive antifungal target. Current clinically accessible calcineurin inhibitors, such as FK506, are immunosuppressive to humans, so exploiting calcineurin inhibition as an antifungal strategy necessitates fungal specificity in order to avoid inhibiting the human pathway. Harnessing fungal calcineurin-inhibitor crystal structures, we recently developed a less immunosuppressive FK506 analog, APX879, with broad-spectrum antifungal activity and demonstrable efficacy in a murine model of invasive fungal infection. Our overarching goal is to better understand, at a molecular level, the interaction determinants of the human and fungal FK506-binding proteins (FKBP12) required for calcineurin inhibition in order to guide the design of fungus-selective, nonimmunosuppressive FK506 analogs. To this end, we characterized high-resolution structures of the Mucor circinelloides FKBP12 bound to FK506 and of the Aspergillus fumigatus, M. circinelloides, and human FKBP12 proteins bound to the FK506 analog APX879, which exhibits enhanced selectivity for fungal pathogens. Combining structural, genetic, and biophysical methodologies with molecular dynamics simulations, we identify critical variations in these structurally similar FKBP12-ligand complexes. The work presented here, aimed at the rational design of more effective calcineurin inhibitors, indeed suggests that modifications to the APX879 scaffold centered around the C(15), C(16), C(18), C(36), and C(37) positions provide the potential to significantly enhance fungal selectivity.
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spelling pubmed-86093672021-12-02 Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs Gobeil, Sophie M.-C. Bobay, Benjamin G. Juvvadi, Praveen R. Cole, D. Christopher Heitman, Joseph Steinbach, William J. Venters, Ronald A. Spicer, Leonard D. mBio Research Article Calcineurin is a critical enzyme in fungal pathogenesis and antifungal drug tolerance and, therefore, an attractive antifungal target. Current clinically accessible calcineurin inhibitors, such as FK506, are immunosuppressive to humans, so exploiting calcineurin inhibition as an antifungal strategy necessitates fungal specificity in order to avoid inhibiting the human pathway. Harnessing fungal calcineurin-inhibitor crystal structures, we recently developed a less immunosuppressive FK506 analog, APX879, with broad-spectrum antifungal activity and demonstrable efficacy in a murine model of invasive fungal infection. Our overarching goal is to better understand, at a molecular level, the interaction determinants of the human and fungal FK506-binding proteins (FKBP12) required for calcineurin inhibition in order to guide the design of fungus-selective, nonimmunosuppressive FK506 analogs. To this end, we characterized high-resolution structures of the Mucor circinelloides FKBP12 bound to FK506 and of the Aspergillus fumigatus, M. circinelloides, and human FKBP12 proteins bound to the FK506 analog APX879, which exhibits enhanced selectivity for fungal pathogens. Combining structural, genetic, and biophysical methodologies with molecular dynamics simulations, we identify critical variations in these structurally similar FKBP12-ligand complexes. The work presented here, aimed at the rational design of more effective calcineurin inhibitors, indeed suggests that modifications to the APX879 scaffold centered around the C(15), C(16), C(18), C(36), and C(37) positions provide the potential to significantly enhance fungal selectivity. American Society for Microbiology 2021-11-23 /pmc/articles/PMC8609367/ /pubmed/34809463 http://dx.doi.org/10.1128/mBio.03000-21 Text en Copyright © 2021 Gobeil et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Gobeil, Sophie M.-C.
Bobay, Benjamin G.
Juvvadi, Praveen R.
Cole, D. Christopher
Heitman, Joseph
Steinbach, William J.
Venters, Ronald A.
Spicer, Leonard D.
Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs
title Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs
title_full Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs
title_fullStr Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs
title_full_unstemmed Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs
title_short Leveraging Fungal and Human Calcineurin-Inhibitor Structures, Biophysical Data, and Dynamics To Design Selective and Nonimmunosuppressive FK506 Analogs
title_sort leveraging fungal and human calcineurin-inhibitor structures, biophysical data, and dynamics to design selective and nonimmunosuppressive fk506 analogs
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8609367/
https://www.ncbi.nlm.nih.gov/pubmed/34809463
http://dx.doi.org/10.1128/mBio.03000-21
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