Cargando…

Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties

M. tuberculosis harbors an essential phosphoserine phosphatase (MtSerB2, Rv3042c) that contains two small- molecule binding ACT-domains (Pfam 01842) at the N-terminus followed by the phosphoserine phosphatase (PSP) domain. We found that exogenously added MtSerB2 elicits microtubule rearrangements in...

Descripción completa

Detalles Bibliográficos
Autores principales: Yadav, Gaya Prasad, Shree, Sonal, Maurya, Ruchi, Rai, Niyati, Singh, Diwakar Kumar, Srivastava, Kishore Kumar, Ramachandran, Ravishankar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4270767/
https://www.ncbi.nlm.nih.gov/pubmed/25521849
http://dx.doi.org/10.1371/journal.pone.0115409
_version_ 1782349537598242816
author Yadav, Gaya Prasad
Shree, Sonal
Maurya, Ruchi
Rai, Niyati
Singh, Diwakar Kumar
Srivastava, Kishore Kumar
Ramachandran, Ravishankar
author_facet Yadav, Gaya Prasad
Shree, Sonal
Maurya, Ruchi
Rai, Niyati
Singh, Diwakar Kumar
Srivastava, Kishore Kumar
Ramachandran, Ravishankar
author_sort Yadav, Gaya Prasad
collection PubMed
description M. tuberculosis harbors an essential phosphoserine phosphatase (MtSerB2, Rv3042c) that contains two small- molecule binding ACT-domains (Pfam 01842) at the N-terminus followed by the phosphoserine phosphatase (PSP) domain. We found that exogenously added MtSerB2 elicits microtubule rearrangements in THP-1 cells. Mutational analysis demonstrates that phosphatase activity is co-related to the elicited rearrangements, while addition of the ACT-domains alone elicits no rearrangements. The enzyme is dimeric, exhibits divalent metal- ion dependency, and is more specific for l- phosphoserine unlike other classical PSPases. Binding of a variety of amino acids to the ACT-domains influences MtSerB2 activity by either acting as activators/inhibitors/have no effects. Additionally, reduced activity of the PSP domain can be enhanced by equimolar addition of the ACT domains. Further, we identified that G18 and G108 of the respective ACT-domains are necessary for ligand-binding and their mutations to G18A and G108A abolish the binding of ligands like l- serine. A specific transition to higher order oligomers is observed upon the addition of l- serine at ∼0.8 molar ratio as supported by Isothermal calorimetry and Size exclusion chromatography experiments. Mutational analysis shows that the transition is dependent on binding of l- serine to the ACT-domains. Furthermore, the higher-order oligomeric form of MtSerB2 is inactive, suggesting that its formation is a mechanism for feedback control of enzyme activity. Inhibition studies involving over eight inhibitors, MtSerB2, and the PSP domain respectively, suggests that targeting the ACT-domains can be an effective strategy for the development of inhibitors.
format Online
Article
Text
id pubmed-4270767
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-42707672014-12-26 Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties Yadav, Gaya Prasad Shree, Sonal Maurya, Ruchi Rai, Niyati Singh, Diwakar Kumar Srivastava, Kishore Kumar Ramachandran, Ravishankar PLoS One Research Article M. tuberculosis harbors an essential phosphoserine phosphatase (MtSerB2, Rv3042c) that contains two small- molecule binding ACT-domains (Pfam 01842) at the N-terminus followed by the phosphoserine phosphatase (PSP) domain. We found that exogenously added MtSerB2 elicits microtubule rearrangements in THP-1 cells. Mutational analysis demonstrates that phosphatase activity is co-related to the elicited rearrangements, while addition of the ACT-domains alone elicits no rearrangements. The enzyme is dimeric, exhibits divalent metal- ion dependency, and is more specific for l- phosphoserine unlike other classical PSPases. Binding of a variety of amino acids to the ACT-domains influences MtSerB2 activity by either acting as activators/inhibitors/have no effects. Additionally, reduced activity of the PSP domain can be enhanced by equimolar addition of the ACT domains. Further, we identified that G18 and G108 of the respective ACT-domains are necessary for ligand-binding and their mutations to G18A and G108A abolish the binding of ligands like l- serine. A specific transition to higher order oligomers is observed upon the addition of l- serine at ∼0.8 molar ratio as supported by Isothermal calorimetry and Size exclusion chromatography experiments. Mutational analysis shows that the transition is dependent on binding of l- serine to the ACT-domains. Furthermore, the higher-order oligomeric form of MtSerB2 is inactive, suggesting that its formation is a mechanism for feedback control of enzyme activity. Inhibition studies involving over eight inhibitors, MtSerB2, and the PSP domain respectively, suggests that targeting the ACT-domains can be an effective strategy for the development of inhibitors. Public Library of Science 2014-12-18 /pmc/articles/PMC4270767/ /pubmed/25521849 http://dx.doi.org/10.1371/journal.pone.0115409 Text en © 2014 Yadav 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
Yadav, Gaya Prasad
Shree, Sonal
Maurya, Ruchi
Rai, Niyati
Singh, Diwakar Kumar
Srivastava, Kishore Kumar
Ramachandran, Ravishankar
Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties
title Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties
title_full Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties
title_fullStr Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties
title_full_unstemmed Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties
title_short Characterization of M. tuberculosis SerB2, an Essential HAD-Family Phosphatase, Reveals Novel Properties
title_sort characterization of m. tuberculosis serb2, an essential had-family phosphatase, reveals novel properties
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4270767/
https://www.ncbi.nlm.nih.gov/pubmed/25521849
http://dx.doi.org/10.1371/journal.pone.0115409
work_keys_str_mv AT yadavgayaprasad characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties
AT shreesonal characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties
AT mauryaruchi characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties
AT rainiyati characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties
AT singhdiwakarkumar characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties
AT srivastavakishorekumar characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties
AT ramachandranravishankar characterizationofmtuberculosisserb2anessentialhadfamilyphosphataserevealsnovelproperties