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Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation

NADH pyrophosphatase (NudC) catalyses the hydrolysis of NAD(H) to AMP and NMN(H) [nicotinamide mononucleotide (reduced form)]. NudC multiple sequence alignment reveals that homologues from most Mycobacterium tuberculosis isolates, but not other mycobacterial species, have a polymorphism at the highl...

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Autores principales: Wang, Xu-De, Gu, Jing, Wang, Ting, Bi, Li-Jun, Zhang, Zhi-Ping, Cui, Zong-Qiang, Wei, Hong-Ping, Deng, Jiao-Yu, Zhang, Xian-En
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283747/
https://www.ncbi.nlm.nih.gov/pubmed/22026918
http://dx.doi.org/10.1111/j.1365-2958.2011.07892.x
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author Wang, Xu-De
Gu, Jing
Wang, Ting
Bi, Li-Jun
Zhang, Zhi-Ping
Cui, Zong-Qiang
Wei, Hong-Ping
Deng, Jiao-Yu
Zhang, Xian-En
author_facet Wang, Xu-De
Gu, Jing
Wang, Ting
Bi, Li-Jun
Zhang, Zhi-Ping
Cui, Zong-Qiang
Wei, Hong-Ping
Deng, Jiao-Yu
Zhang, Xian-En
author_sort Wang, Xu-De
collection PubMed
description NADH pyrophosphatase (NudC) catalyses the hydrolysis of NAD(H) to AMP and NMN(H) [nicotinamide mononucleotide (reduced form)]. NudC multiple sequence alignment reveals that homologues from most Mycobacterium tuberculosis isolates, but not other mycobacterial species, have a polymorphism at the highly conserved residue 237. To elucidate the functional significance of this polymorphism, comparative analyses were performed using representative NudC isoforms from M. tuberculosis H37Rv (NudC(Rv)) and M. bovis BCG (NudC(BCG)). Biochemical analysis showed that the P237Q polymorphism prevents dimer formation, and results in a loss of enzymatic activity. Importantly, NudC(BCG) was found to degrade the active forms of isoniazid (INH), INH-NAD and ethionamide (ETH), ETH-NAD. Consequently, overexpression of NudC(BCG) in Mycobacterium smegmatis mc(2)155 and M. bovis BCG resulted in a high level of resistance to both INH and ETH. Further genetic studies showed that deletion of the nudC gene in M. smegmatis mc(2)155 and M. bovis BCG resulted in increased susceptibility to INH and ETH. Moreover, inactivation of NudC in both strains caused a defect in drug tolerance phenotype for both drugs in exposure assays. Taken together, these data suggest that mycobacterial NudC plays an important role in the inactivation of INH and ETH.
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spelling pubmed-32837472012-02-23 Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation Wang, Xu-De Gu, Jing Wang, Ting Bi, Li-Jun Zhang, Zhi-Ping Cui, Zong-Qiang Wei, Hong-Ping Deng, Jiao-Yu Zhang, Xian-En Mol Microbiol Research Articles NADH pyrophosphatase (NudC) catalyses the hydrolysis of NAD(H) to AMP and NMN(H) [nicotinamide mononucleotide (reduced form)]. NudC multiple sequence alignment reveals that homologues from most Mycobacterium tuberculosis isolates, but not other mycobacterial species, have a polymorphism at the highly conserved residue 237. To elucidate the functional significance of this polymorphism, comparative analyses were performed using representative NudC isoforms from M. tuberculosis H37Rv (NudC(Rv)) and M. bovis BCG (NudC(BCG)). Biochemical analysis showed that the P237Q polymorphism prevents dimer formation, and results in a loss of enzymatic activity. Importantly, NudC(BCG) was found to degrade the active forms of isoniazid (INH), INH-NAD and ethionamide (ETH), ETH-NAD. Consequently, overexpression of NudC(BCG) in Mycobacterium smegmatis mc(2)155 and M. bovis BCG resulted in a high level of resistance to both INH and ETH. Further genetic studies showed that deletion of the nudC gene in M. smegmatis mc(2)155 and M. bovis BCG resulted in increased susceptibility to INH and ETH. Moreover, inactivation of NudC in both strains caused a defect in drug tolerance phenotype for both drugs in exposure assays. Taken together, these data suggest that mycobacterial NudC plays an important role in the inactivation of INH and ETH. Blackwell Publishing Ltd 2011-12 2011-11-03 /pmc/articles/PMC3283747/ /pubmed/22026918 http://dx.doi.org/10.1111/j.1365-2958.2011.07892.x Text en © 2011 Blackwell Publishing Ltd http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Wang, Xu-De
Gu, Jing
Wang, Ting
Bi, Li-Jun
Zhang, Zhi-Ping
Cui, Zong-Qiang
Wei, Hong-Ping
Deng, Jiao-Yu
Zhang, Xian-En
Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
title Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
title_full Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
title_fullStr Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
title_full_unstemmed Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
title_short Comparative analysis of mycobacterial NADH pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
title_sort comparative analysis of mycobacterial nadh pyrophosphatase isoforms reveals a novel mechanism for isoniazid and ethionamide inactivation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283747/
https://www.ncbi.nlm.nih.gov/pubmed/22026918
http://dx.doi.org/10.1111/j.1365-2958.2011.07892.x
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