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Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis

[Image: see text] Isonitrile natural products exhibit promising antibacterial activities. However, their mechanism of action (MoA) remains largely unknown. Based on the nanomolar potency of xanthocillin X (Xan) against diverse difficult-to-treat Gram-negative bacteria, including the critical priorit...

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Autores principales: Hübner, Ines, Shapiro, Justin A., Hoßmann, Jörn, Drechsel, Jonas, Hacker, Stephan M., Rather, Philip N., Pieper, Dietmar H., Wuest, William M., Sieber, Stephan A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8006170/
https://www.ncbi.nlm.nih.gov/pubmed/33791430
http://dx.doi.org/10.1021/acscentsci.0c01621
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author Hübner, Ines
Shapiro, Justin A.
Hoßmann, Jörn
Drechsel, Jonas
Hacker, Stephan M.
Rather, Philip N.
Pieper, Dietmar H.
Wuest, William M.
Sieber, Stephan A.
author_facet Hübner, Ines
Shapiro, Justin A.
Hoßmann, Jörn
Drechsel, Jonas
Hacker, Stephan M.
Rather, Philip N.
Pieper, Dietmar H.
Wuest, William M.
Sieber, Stephan A.
author_sort Hübner, Ines
collection PubMed
description [Image: see text] Isonitrile natural products exhibit promising antibacterial activities. However, their mechanism of action (MoA) remains largely unknown. Based on the nanomolar potency of xanthocillin X (Xan) against diverse difficult-to-treat Gram-negative bacteria, including the critical priority pathogen Acinetobacter baumannii, we performed in-depth studies to decipher its MoA. While neither metal binding nor cellular protein targets were detected as relevant for Xan’s antibiotic effects, sequencing of resistant strains revealed a conserved mutation in the heme biosynthesis enzyme porphobilinogen synthase (PbgS). This mutation caused impaired enzymatic efficiency indicative of reduced heme production. This discovery led to the validation of an untapped mechanism, by which direct heme sequestration of Xan prevents its binding into cognate enzyme pockets resulting in uncontrolled cofactor biosynthesis, accumulation of porphyrins, and corresponding stress with deleterious effects for bacterial viability. Thus, Xan represents a promising antibiotic displaying activity even against multidrug resistant strains, while exhibiting low toxicity to human cells.
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spelling pubmed-80061702021-03-30 Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis Hübner, Ines Shapiro, Justin A. Hoßmann, Jörn Drechsel, Jonas Hacker, Stephan M. Rather, Philip N. Pieper, Dietmar H. Wuest, William M. Sieber, Stephan A. ACS Cent Sci [Image: see text] Isonitrile natural products exhibit promising antibacterial activities. However, their mechanism of action (MoA) remains largely unknown. Based on the nanomolar potency of xanthocillin X (Xan) against diverse difficult-to-treat Gram-negative bacteria, including the critical priority pathogen Acinetobacter baumannii, we performed in-depth studies to decipher its MoA. While neither metal binding nor cellular protein targets were detected as relevant for Xan’s antibiotic effects, sequencing of resistant strains revealed a conserved mutation in the heme biosynthesis enzyme porphobilinogen synthase (PbgS). This mutation caused impaired enzymatic efficiency indicative of reduced heme production. This discovery led to the validation of an untapped mechanism, by which direct heme sequestration of Xan prevents its binding into cognate enzyme pockets resulting in uncontrolled cofactor biosynthesis, accumulation of porphyrins, and corresponding stress with deleterious effects for bacterial viability. Thus, Xan represents a promising antibiotic displaying activity even against multidrug resistant strains, while exhibiting low toxicity to human cells. American Chemical Society 2021-01-20 2021-03-24 /pmc/articles/PMC8006170/ /pubmed/33791430 http://dx.doi.org/10.1021/acscentsci.0c01621 Text en © 2021 The Authors. Published by American Chemical Society Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Hübner, Ines
Shapiro, Justin A.
Hoßmann, Jörn
Drechsel, Jonas
Hacker, Stephan M.
Rather, Philip N.
Pieper, Dietmar H.
Wuest, William M.
Sieber, Stephan A.
Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis
title Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis
title_full Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis
title_fullStr Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis
title_full_unstemmed Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis
title_short Broad Spectrum Antibiotic Xanthocillin X Effectively Kills Acinetobacter baumanniivia Dysregulation of Heme Biosynthesis
title_sort broad spectrum antibiotic xanthocillin x effectively kills acinetobacter baumanniivia dysregulation of heme biosynthesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8006170/
https://www.ncbi.nlm.nih.gov/pubmed/33791430
http://dx.doi.org/10.1021/acscentsci.0c01621
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