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Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis

Mycobacterium tuberculosis (Mtb) endures a combination of metal scarcity and toxicity throughout the human infection cycle, contributing to complex clinical manifestations. Pathogens counteract this paradoxical dysmetallostasis by producing specialized metal trafficking systems. Capture of extracell...

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Autores principales: Mehdiratta, Kritee, Singh, Shubham, Sharma, Sachin, Bhosale, Rashmi S., Choudhury, Rahul, Masal, Dattatraya P., Manocha, Alzu, Dhamale, Bhushan Dilip, Khan, Naseem, Asokachandran, Vivekanand, Sharma, Pooja, Ikeh, Melanie, Brown, Amanda C., Parish, Tanya, Ojha, Anil K., Michael, Joy Sarojini, Faruq, Mohammed, Medigeshi, Guruprasad R., Mohanty, Debasisa, Reddy, D. Srinivasa, Natarajan, Vivek T., Kamat, Siddhesh S., Gokhale, Rajesh S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8872721/
https://www.ncbi.nlm.nih.gov/pubmed/35193957
http://dx.doi.org/10.1073/pnas.2110293119
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author Mehdiratta, Kritee
Singh, Shubham
Sharma, Sachin
Bhosale, Rashmi S.
Choudhury, Rahul
Masal, Dattatraya P.
Manocha, Alzu
Dhamale, Bhushan Dilip
Khan, Naseem
Asokachandran, Vivekanand
Sharma, Pooja
Ikeh, Melanie
Brown, Amanda C.
Parish, Tanya
Ojha, Anil K.
Michael, Joy Sarojini
Faruq, Mohammed
Medigeshi, Guruprasad R.
Mohanty, Debasisa
Reddy, D. Srinivasa
Natarajan, Vivek T.
Kamat, Siddhesh S.
Gokhale, Rajesh S.
author_facet Mehdiratta, Kritee
Singh, Shubham
Sharma, Sachin
Bhosale, Rashmi S.
Choudhury, Rahul
Masal, Dattatraya P.
Manocha, Alzu
Dhamale, Bhushan Dilip
Khan, Naseem
Asokachandran, Vivekanand
Sharma, Pooja
Ikeh, Melanie
Brown, Amanda C.
Parish, Tanya
Ojha, Anil K.
Michael, Joy Sarojini
Faruq, Mohammed
Medigeshi, Guruprasad R.
Mohanty, Debasisa
Reddy, D. Srinivasa
Natarajan, Vivek T.
Kamat, Siddhesh S.
Gokhale, Rajesh S.
author_sort Mehdiratta, Kritee
collection PubMed
description Mycobacterium tuberculosis (Mtb) endures a combination of metal scarcity and toxicity throughout the human infection cycle, contributing to complex clinical manifestations. Pathogens counteract this paradoxical dysmetallostasis by producing specialized metal trafficking systems. Capture of extracellular metal by siderophores is a widely accepted mode of iron acquisition, and Mtb iron-chelating siderophores, mycobactin, have been known since 1965. Currently, it is not known whether Mtb produces zinc scavenging molecules. Here, we characterize low-molecular-weight zinc-binding compounds secreted and imported by Mtb for zinc acquisition. These molecules, termed kupyaphores, are produced by a 10.8 kbp biosynthetic cluster and consists of a dipeptide core of ornithine and phenylalaninol, where amino groups are acylated with isonitrile-containing fatty acyl chains. Kupyaphores are stringently regulated and support Mtb survival under both nutritional deprivation and intoxication conditions. A kupyaphore-deficient Mtb strain is unable to mobilize sufficient zinc and shows reduced fitness upon infection. We observed early induction of kupyaphores in Mtb-infected mice lungs after infection, and these metabolites disappeared after 2 wk. Furthermore, we identify an Mtb-encoded isonitrile hydratase, which can possibly mediate intracellular zinc release through covalent modification of the isonitrile group of kupyaphores. Mtb clinical strains also produce kupyaphores during early passages. Our study thus uncovers a previously unknown zinc acquisition strategy of Mtb that could modulate host–pathogen interactions and disease outcome.
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spelling pubmed-88727212022-08-22 Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis Mehdiratta, Kritee Singh, Shubham Sharma, Sachin Bhosale, Rashmi S. Choudhury, Rahul Masal, Dattatraya P. Manocha, Alzu Dhamale, Bhushan Dilip Khan, Naseem Asokachandran, Vivekanand Sharma, Pooja Ikeh, Melanie Brown, Amanda C. Parish, Tanya Ojha, Anil K. Michael, Joy Sarojini Faruq, Mohammed Medigeshi, Guruprasad R. Mohanty, Debasisa Reddy, D. Srinivasa Natarajan, Vivek T. Kamat, Siddhesh S. Gokhale, Rajesh S. Proc Natl Acad Sci U S A Biological Sciences Mycobacterium tuberculosis (Mtb) endures a combination of metal scarcity and toxicity throughout the human infection cycle, contributing to complex clinical manifestations. Pathogens counteract this paradoxical dysmetallostasis by producing specialized metal trafficking systems. Capture of extracellular metal by siderophores is a widely accepted mode of iron acquisition, and Mtb iron-chelating siderophores, mycobactin, have been known since 1965. Currently, it is not known whether Mtb produces zinc scavenging molecules. Here, we characterize low-molecular-weight zinc-binding compounds secreted and imported by Mtb for zinc acquisition. These molecules, termed kupyaphores, are produced by a 10.8 kbp biosynthetic cluster and consists of a dipeptide core of ornithine and phenylalaninol, where amino groups are acylated with isonitrile-containing fatty acyl chains. Kupyaphores are stringently regulated and support Mtb survival under both nutritional deprivation and intoxication conditions. A kupyaphore-deficient Mtb strain is unable to mobilize sufficient zinc and shows reduced fitness upon infection. We observed early induction of kupyaphores in Mtb-infected mice lungs after infection, and these metabolites disappeared after 2 wk. Furthermore, we identify an Mtb-encoded isonitrile hydratase, which can possibly mediate intracellular zinc release through covalent modification of the isonitrile group of kupyaphores. Mtb clinical strains also produce kupyaphores during early passages. Our study thus uncovers a previously unknown zinc acquisition strategy of Mtb that could modulate host–pathogen interactions and disease outcome. National Academy of Sciences 2022-02-22 2022-02-22 /pmc/articles/PMC8872721/ /pubmed/35193957 http://dx.doi.org/10.1073/pnas.2110293119 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Mehdiratta, Kritee
Singh, Shubham
Sharma, Sachin
Bhosale, Rashmi S.
Choudhury, Rahul
Masal, Dattatraya P.
Manocha, Alzu
Dhamale, Bhushan Dilip
Khan, Naseem
Asokachandran, Vivekanand
Sharma, Pooja
Ikeh, Melanie
Brown, Amanda C.
Parish, Tanya
Ojha, Anil K.
Michael, Joy Sarojini
Faruq, Mohammed
Medigeshi, Guruprasad R.
Mohanty, Debasisa
Reddy, D. Srinivasa
Natarajan, Vivek T.
Kamat, Siddhesh S.
Gokhale, Rajesh S.
Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis
title Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis
title_full Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis
title_fullStr Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis
title_full_unstemmed Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis
title_short Kupyaphores are zinc homeostatic metallophores required for colonization of Mycobacterium tuberculosis
title_sort kupyaphores are zinc homeostatic metallophores required for colonization of mycobacterium tuberculosis
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8872721/
https://www.ncbi.nlm.nih.gov/pubmed/35193957
http://dx.doi.org/10.1073/pnas.2110293119
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