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Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA

BACKGROUND: Mycobacterium ulcerans, the causative agent of Buruli ulcer in humans, is unique among the members of Mycobacterium genus due to the presence of the virulence determinant megaplasmid pMUM001. This plasmid encodes multiple virulence-associated genes, including mup011, which is an uncharac...

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Autores principales: Arora, Gunjan, Sajid, Andaleeb, Singhal, Anshika, Joshi, Jayadev, Virmani, Richa, Gupta, Meetu, Verma, Nupur, Maji, Abhijit, Misra, Richa, Baronian, Grégory, Pandey, Amit K., Molle, Virginie, Singh, Yogendra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4238996/
https://www.ncbi.nlm.nih.gov/pubmed/25412098
http://dx.doi.org/10.1371/journal.pntd.0003315
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author Arora, Gunjan
Sajid, Andaleeb
Singhal, Anshika
Joshi, Jayadev
Virmani, Richa
Gupta, Meetu
Verma, Nupur
Maji, Abhijit
Misra, Richa
Baronian, Grégory
Pandey, Amit K.
Molle, Virginie
Singh, Yogendra
author_facet Arora, Gunjan
Sajid, Andaleeb
Singhal, Anshika
Joshi, Jayadev
Virmani, Richa
Gupta, Meetu
Verma, Nupur
Maji, Abhijit
Misra, Richa
Baronian, Grégory
Pandey, Amit K.
Molle, Virginie
Singh, Yogendra
author_sort Arora, Gunjan
collection PubMed
description BACKGROUND: Mycobacterium ulcerans, the causative agent of Buruli ulcer in humans, is unique among the members of Mycobacterium genus due to the presence of the virulence determinant megaplasmid pMUM001. This plasmid encodes multiple virulence-associated genes, including mup011, which is an uncharacterized Ser/Thr protein kinase (STPK) PknQ. METHODOLOGY/PRINCIPAL FINDINGS: In this study, we have characterized PknQ and explored its interaction with MupFHA (Mup018c), a FHA domain containing protein also encoded by pMUM001. MupFHA was found to interact with PknQ and suppress its autophosphorylation. Subsequent protein-protein docking and molecular dynamic simulation analyses showed that this interaction involves the FHA domain of MupFHA and PknQ activation loop residues Ser(170) and Thr(174). FHA domains are known to recognize phosphothreonine residues, and therefore, MupFHA may be acting as one of the few unusual FHA-domain having overlapping specificity. Additionally, we elucidated the PknQ-dependent regulation of MupDivIVA (Mup012c), which is a DivIVA domain containing protein encoded by pMUM001. MupDivIVA interacts with MupFHA and this interaction may also involve phospho-threonine/serine residues of MupDivIVA. CONCLUSIONS/SIGNIFICANCE: Together, these results describe novel signaling mechanisms in M. ulcerans and show a three-way regulation of PknQ, MupFHA, and MupDivIVA. FHA domains have been considered to be only pThr specific and our results indicate a novel mechanism of pSer as well as pThr interaction exhibited by MupFHA. These results signify the need of further re-evaluating the FHA domain –pThr/pSer interaction model. MupFHA may serve as the ideal candidate for structural studies on this unique class of modular enzymes.
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spelling pubmed-42389962014-11-26 Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA Arora, Gunjan Sajid, Andaleeb Singhal, Anshika Joshi, Jayadev Virmani, Richa Gupta, Meetu Verma, Nupur Maji, Abhijit Misra, Richa Baronian, Grégory Pandey, Amit K. Molle, Virginie Singh, Yogendra PLoS Negl Trop Dis Research Article BACKGROUND: Mycobacterium ulcerans, the causative agent of Buruli ulcer in humans, is unique among the members of Mycobacterium genus due to the presence of the virulence determinant megaplasmid pMUM001. This plasmid encodes multiple virulence-associated genes, including mup011, which is an uncharacterized Ser/Thr protein kinase (STPK) PknQ. METHODOLOGY/PRINCIPAL FINDINGS: In this study, we have characterized PknQ and explored its interaction with MupFHA (Mup018c), a FHA domain containing protein also encoded by pMUM001. MupFHA was found to interact with PknQ and suppress its autophosphorylation. Subsequent protein-protein docking and molecular dynamic simulation analyses showed that this interaction involves the FHA domain of MupFHA and PknQ activation loop residues Ser(170) and Thr(174). FHA domains are known to recognize phosphothreonine residues, and therefore, MupFHA may be acting as one of the few unusual FHA-domain having overlapping specificity. Additionally, we elucidated the PknQ-dependent regulation of MupDivIVA (Mup012c), which is a DivIVA domain containing protein encoded by pMUM001. MupDivIVA interacts with MupFHA and this interaction may also involve phospho-threonine/serine residues of MupDivIVA. CONCLUSIONS/SIGNIFICANCE: Together, these results describe novel signaling mechanisms in M. ulcerans and show a three-way regulation of PknQ, MupFHA, and MupDivIVA. FHA domains have been considered to be only pThr specific and our results indicate a novel mechanism of pSer as well as pThr interaction exhibited by MupFHA. These results signify the need of further re-evaluating the FHA domain –pThr/pSer interaction model. MupFHA may serve as the ideal candidate for structural studies on this unique class of modular enzymes. Public Library of Science 2014-11-20 /pmc/articles/PMC4238996/ /pubmed/25412098 http://dx.doi.org/10.1371/journal.pntd.0003315 Text en © 2014 Arora et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Arora, Gunjan
Sajid, Andaleeb
Singhal, Anshika
Joshi, Jayadev
Virmani, Richa
Gupta, Meetu
Verma, Nupur
Maji, Abhijit
Misra, Richa
Baronian, Grégory
Pandey, Amit K.
Molle, Virginie
Singh, Yogendra
Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA
title Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA
title_full Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA
title_fullStr Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA
title_full_unstemmed Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA
title_short Identification of Ser/Thr kinase and Forkhead Associated Domains in Mycobacterium ulcerans: Characterization of Novel Association between Protein Kinase Q and MupFHA
title_sort identification of ser/thr kinase and forkhead associated domains in mycobacterium ulcerans: characterization of novel association between protein kinase q and mupfha
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4238996/
https://www.ncbi.nlm.nih.gov/pubmed/25412098
http://dx.doi.org/10.1371/journal.pntd.0003315
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