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Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target

OBJECTIVES: Identification and validation of novel therapeutic targets is imperative to tackle the rise of drug resistance in tuberculosis. An essential Mur ligase-like gene (Rv3712), expected to be involved in cell-wall peptidoglycan (PG) biogenesis and conserved across mycobacteria, including the...

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Autores principales: Maitra, Arundhati, Nukala, Syamasundari, Dickman, Rachael, Martin, Liam T, Munshi, Tulika, Gupta, Antima, Shepherd, Adrian J, Arnvig, Kristine B, Tabor, Alethea B, Keep, Nicholas H, Bhakta, Sanjib
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8210147/
https://www.ncbi.nlm.nih.gov/pubmed/34223102
http://dx.doi.org/10.1093/jacamr/dlab028
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author Maitra, Arundhati
Nukala, Syamasundari
Dickman, Rachael
Martin, Liam T
Munshi, Tulika
Gupta, Antima
Shepherd, Adrian J
Arnvig, Kristine B
Tabor, Alethea B
Keep, Nicholas H
Bhakta, Sanjib
author_facet Maitra, Arundhati
Nukala, Syamasundari
Dickman, Rachael
Martin, Liam T
Munshi, Tulika
Gupta, Antima
Shepherd, Adrian J
Arnvig, Kristine B
Tabor, Alethea B
Keep, Nicholas H
Bhakta, Sanjib
author_sort Maitra, Arundhati
collection PubMed
description OBJECTIVES: Identification and validation of novel therapeutic targets is imperative to tackle the rise of drug resistance in tuberculosis. An essential Mur ligase-like gene (Rv3712), expected to be involved in cell-wall peptidoglycan (PG) biogenesis and conserved across mycobacteria, including the genetically depleted Mycobacterium leprae, was the primary focus of this study. METHODS: Biochemical analysis of Rv3712 was performed using inorganic phosphate release assays. The operon structure was identified using reverse-transcriptase PCR and a transcription/translation fusion vector. In vivo mycobacterial protein fragment complementation assays helped generate the interactome. RESULTS: Rv3712 was found to be an ATPase. Characterization of its operon revealed a mycobacteria-specific promoter driving the co-transcription of Rv3712 and Rv3713. The two gene products were found to interact with each other in vivo. Sequence-based functional assignments reveal that Rv3712 and Rv3713 are likely to be the mycobacterial PG precursor-modifying enzymes MurT and GatD, respectively. An in vivo network involving Mtb-MurT, regulatory proteins and cell division proteins was also identified. CONCLUSIONS: Understanding the role of the enzyme complex in the context of PG metabolism and cell division, and the implications for antimicrobial resistance and host immune responses will facilitate the design of therapeutics that are targeted specifically to M. tuberculosis.
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spelling pubmed-82101472021-07-02 Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target Maitra, Arundhati Nukala, Syamasundari Dickman, Rachael Martin, Liam T Munshi, Tulika Gupta, Antima Shepherd, Adrian J Arnvig, Kristine B Tabor, Alethea B Keep, Nicholas H Bhakta, Sanjib JAC Antimicrob Resist Original Article OBJECTIVES: Identification and validation of novel therapeutic targets is imperative to tackle the rise of drug resistance in tuberculosis. An essential Mur ligase-like gene (Rv3712), expected to be involved in cell-wall peptidoglycan (PG) biogenesis and conserved across mycobacteria, including the genetically depleted Mycobacterium leprae, was the primary focus of this study. METHODS: Biochemical analysis of Rv3712 was performed using inorganic phosphate release assays. The operon structure was identified using reverse-transcriptase PCR and a transcription/translation fusion vector. In vivo mycobacterial protein fragment complementation assays helped generate the interactome. RESULTS: Rv3712 was found to be an ATPase. Characterization of its operon revealed a mycobacteria-specific promoter driving the co-transcription of Rv3712 and Rv3713. The two gene products were found to interact with each other in vivo. Sequence-based functional assignments reveal that Rv3712 and Rv3713 are likely to be the mycobacterial PG precursor-modifying enzymes MurT and GatD, respectively. An in vivo network involving Mtb-MurT, regulatory proteins and cell division proteins was also identified. CONCLUSIONS: Understanding the role of the enzyme complex in the context of PG metabolism and cell division, and the implications for antimicrobial resistance and host immune responses will facilitate the design of therapeutics that are targeted specifically to M. tuberculosis. Oxford University Press 2021-03-16 /pmc/articles/PMC8210147/ /pubmed/34223102 http://dx.doi.org/10.1093/jacamr/dlab028 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of the British Society for Antimicrobial Chemotherapy. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Maitra, Arundhati
Nukala, Syamasundari
Dickman, Rachael
Martin, Liam T
Munshi, Tulika
Gupta, Antima
Shepherd, Adrian J
Arnvig, Kristine B
Tabor, Alethea B
Keep, Nicholas H
Bhakta, Sanjib
Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
title Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
title_full Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
title_fullStr Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
title_full_unstemmed Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
title_short Characterization of the MurT/GatD complex in Mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
title_sort characterization of the murt/gatd complex in mycobacterium tuberculosis towards validating a novel anti-tubercular drug target
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8210147/
https://www.ncbi.nlm.nih.gov/pubmed/34223102
http://dx.doi.org/10.1093/jacamr/dlab028
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