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Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b

BACKGROUND: Leishmania contains a concatenated mitochondrial DNA, kDNA. Universal minicircle sequence binding protein (UMSBP), a mitochondrial protein, initiates kDNA replication by binding with a conserved universal minicircle sequence (UMS) of kDNA. Here, we describe first time in L. donovani the...

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Autores principales: Singh, Ruby, Purkait, Bidyut, Abhishek, Kumar, Saini, Savita, Das, Sushmita, Verma, Sudha, Mandal, Abhishek, Ghosh, Ayan Kr., Ansari, Yousuf, Kumar, Ashish, Sardar, Abul H., Kumar, Ajay, Parrack, Pradeep, Das, Pradeep
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4756535/
https://www.ncbi.nlm.nih.gov/pubmed/26889377
http://dx.doi.org/10.1186/s13578-016-0072-z
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author Singh, Ruby
Purkait, Bidyut
Abhishek, Kumar
Saini, Savita
Das, Sushmita
Verma, Sudha
Mandal, Abhishek
Ghosh, Ayan Kr.
Ansari, Yousuf
Kumar, Ashish
Sardar, Abul H.
Kumar, Ajay
Parrack, Pradeep
Das, Pradeep
author_facet Singh, Ruby
Purkait, Bidyut
Abhishek, Kumar
Saini, Savita
Das, Sushmita
Verma, Sudha
Mandal, Abhishek
Ghosh, Ayan Kr.
Ansari, Yousuf
Kumar, Ashish
Sardar, Abul H.
Kumar, Ajay
Parrack, Pradeep
Das, Pradeep
author_sort Singh, Ruby
collection PubMed
description BACKGROUND: Leishmania contains a concatenated mitochondrial DNA, kDNA. Universal minicircle sequence binding protein (UMSBP), a mitochondrial protein, initiates kDNA replication by binding with a conserved universal minicircle sequence (UMS) of kDNA. Here, we describe first time in L. donovani the regulation of DNA binding activity of UMSBP and the role of UMSBP in virulence. METHODS: Insilco and EMSA study were performed to show UMS-binding activity of UMSBP. Tryparedoxin(TXN)-tryparedoxin peroxidase(TXNPx) assay as well as co-overexpression of cytochrome-b5 reductase-like protein (CBRL) and tryparedoxin in L. donovani were done to know the regulation of DNA binding activity of UMSBP. Knockout and episomal-expression constructs of UMSBP were transfected in L. donovani. The cell viability assay and immunofluorescence study to know the status of kDNA were performed. Macrophages were infected with transfected parasites. mRNA level of cytochrome b, activity of complex-III, intracellular ATP level of both transfected promastigotes and amastigotes as well as ROS concentration and the level of apoptosis of transfected promastigotes were measured. Level of oxidative phosphorylation of both transfected and un-transfected amastigotes were compared. Burden of transfected amastigotes in both macrophages and BALB/c mice were measured. RESULTS: L. donovani UMSBP is capable of binding with UMS, regulated by redox through mitochondrial enzymes, TXN, TXNPx and CBRL. Depletion of UMSBP (LdU(−/−)) caused kDNA loss, which decreased cytochrome-b expression [component of complex-III of electron transport chain (ETC)] and leads to the disruption of complex-III activity, decreased ATP generation, increased ROS level and promastigotes exhibited apoptosis like death. Interestingly, single knockout of UMSBP (LdU(−/+)) has no effect on promastigotes survival. However, single knockout in intracellular amastigotes demonstrate loss of mRNA level of cytochrome-b, disruption in the activity of complex-III and reduced production of ATP in amastigotes than wild type. This process interfere with the oxidative-phosphorylation and thereby completely inhibit the intracellular proliferation of LdU(−/+) amastigotes in human macrophages and in BALB/c mice. Amastigotes proliferation was restored as wild type after episomal expression of LdUMSBP in LdU(−/+) parasites (LdU(−/+)AB). CONCLUSION: The LdUMSBP regulates leishmanial mitochondrial respiration and pathogenesis. So, LdUMSBP may be an attractive target for rational drug designing and LdU(−/+) parasites could be considered as a live attenuated vaccine candidate against visceral leishmaniasis. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13578-016-0072-z) contains supplementary material, which is available to authorized users.
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spelling pubmed-47565352016-02-18 Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b Singh, Ruby Purkait, Bidyut Abhishek, Kumar Saini, Savita Das, Sushmita Verma, Sudha Mandal, Abhishek Ghosh, Ayan Kr. Ansari, Yousuf Kumar, Ashish Sardar, Abul H. Kumar, Ajay Parrack, Pradeep Das, Pradeep Cell Biosci Research BACKGROUND: Leishmania contains a concatenated mitochondrial DNA, kDNA. Universal minicircle sequence binding protein (UMSBP), a mitochondrial protein, initiates kDNA replication by binding with a conserved universal minicircle sequence (UMS) of kDNA. Here, we describe first time in L. donovani the regulation of DNA binding activity of UMSBP and the role of UMSBP in virulence. METHODS: Insilco and EMSA study were performed to show UMS-binding activity of UMSBP. Tryparedoxin(TXN)-tryparedoxin peroxidase(TXNPx) assay as well as co-overexpression of cytochrome-b5 reductase-like protein (CBRL) and tryparedoxin in L. donovani were done to know the regulation of DNA binding activity of UMSBP. Knockout and episomal-expression constructs of UMSBP were transfected in L. donovani. The cell viability assay and immunofluorescence study to know the status of kDNA were performed. Macrophages were infected with transfected parasites. mRNA level of cytochrome b, activity of complex-III, intracellular ATP level of both transfected promastigotes and amastigotes as well as ROS concentration and the level of apoptosis of transfected promastigotes were measured. Level of oxidative phosphorylation of both transfected and un-transfected amastigotes were compared. Burden of transfected amastigotes in both macrophages and BALB/c mice were measured. RESULTS: L. donovani UMSBP is capable of binding with UMS, regulated by redox through mitochondrial enzymes, TXN, TXNPx and CBRL. Depletion of UMSBP (LdU(−/−)) caused kDNA loss, which decreased cytochrome-b expression [component of complex-III of electron transport chain (ETC)] and leads to the disruption of complex-III activity, decreased ATP generation, increased ROS level and promastigotes exhibited apoptosis like death. Interestingly, single knockout of UMSBP (LdU(−/+)) has no effect on promastigotes survival. However, single knockout in intracellular amastigotes demonstrate loss of mRNA level of cytochrome-b, disruption in the activity of complex-III and reduced production of ATP in amastigotes than wild type. This process interfere with the oxidative-phosphorylation and thereby completely inhibit the intracellular proliferation of LdU(−/+) amastigotes in human macrophages and in BALB/c mice. Amastigotes proliferation was restored as wild type after episomal expression of LdUMSBP in LdU(−/+) parasites (LdU(−/+)AB). CONCLUSION: The LdUMSBP regulates leishmanial mitochondrial respiration and pathogenesis. So, LdUMSBP may be an attractive target for rational drug designing and LdU(−/+) parasites could be considered as a live attenuated vaccine candidate against visceral leishmaniasis. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13578-016-0072-z) contains supplementary material, which is available to authorized users. BioMed Central 2016-02-17 /pmc/articles/PMC4756535/ /pubmed/26889377 http://dx.doi.org/10.1186/s13578-016-0072-z Text en © Singh et al. 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Singh, Ruby
Purkait, Bidyut
Abhishek, Kumar
Saini, Savita
Das, Sushmita
Verma, Sudha
Mandal, Abhishek
Ghosh, Ayan Kr.
Ansari, Yousuf
Kumar, Ashish
Sardar, Abul H.
Kumar, Ajay
Parrack, Pradeep
Das, Pradeep
Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
title Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
title_full Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
title_fullStr Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
title_full_unstemmed Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
title_short Universal minicircle sequence binding protein of Leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
title_sort universal minicircle sequence binding protein of leishmania donovani regulates pathogenicity by controlling expression of cytochrome-b
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4756535/
https://www.ncbi.nlm.nih.gov/pubmed/26889377
http://dx.doi.org/10.1186/s13578-016-0072-z
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