Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation

Leishmania donovani encounters oxidative environment in the host macrophage and expected to have robust DNA repair mechanisms. Base Excision Repair (BER), a predominant repair pathway in L. donovani remains unexplored. Presence of mitochondria in eukaryotes has been projected as a symbiotic relation...

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Main Authors: Mohd. Imran Khan, Anshul Mishra, Sanjiva Bimal, Pradeep Das, Kislay K. Sinha
Format: Article
Language:English
Published: Science Planet Inc. 2017-10-01
Series:Canadian Journal of Biotechnology
Online Access:https://www.canadianjbiotech.com/CAN_J_BIOTECH/Archives/v1/Special Issue/cjb.2017-a157.pdf
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spelling doaj-5ba6e7010ead41fda90a42c35af7b5842020-11-24T21:18:43ZengScience Planet Inc.Canadian Journal of Biotechnology2560-83042017-10-011Special Issue17117110.24870/cjb.2017-a157Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet RadiationMohd. Imran Khan0Anshul Mishra1Sanjiva Bimal2Pradeep Das3Kislay K. Sinha4Department of Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER), Hajipur 844102, INDIADepartment of Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER), Hajipur 844102, INDIARajendra Memorial Research Institute of Medical Sciences (RMRIMS), Patna 800007, INDIADepartment of Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER), Hajipur 844102, INDIADepartment of Biotechnology, National Institute of Pharmaceutical Education and Research (NIPER), Hajipur 844102, INDIALeishmania donovani encounters oxidative environment in the host macrophage and expected to have robust DNA repair mechanisms. Base Excision Repair (BER), a predominant repair pathway in L. donovani remains unexplored. Presence of mitochondria in eukaryotes has been projected as a symbiotic relationship since long and the role of DNA polymerase β in repair of mitochondrial DNA has gained importance in recent past. We ectopically expressed Leishmania DNA polymerase β (LdPolβ) under inducible promoter in E. coli and found it is biologically active in vitro by using pUC19 as substrate. Further we checked its effect on sensitivity of E. coli to UV rays. We find that heterologous LdPolβ slows down the growth of E. coli and surprisingly, could protect it from lethal effects of UV to a large extent. Co-expression of leishmania DNA Ligase IIIα (LdLigIIIα) has a synergistic effect on survival advantage offered by LdPolβ. Survival advantage given LdPolβ in E. coli is reconfirmed by FACS analysis. Our observations indicate that LdPolβ is crucial for handling ROS induced toxicity inside the mitochondria of the parasite and for its survival inside host macrophage. This studied may lead to explore for finding of the importance of LdPolβ in survival against DNA damaging agents in L. donovani and its role in pathogenesis of leishmaniasis, it would help to discover new target and development of newer drug against Leishmaniasis.https://www.canadianjbiotech.com/CAN_J_BIOTECH/Archives/v1/Special Issue/cjb.2017-a157.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Mohd. Imran Khan
Anshul Mishra
Sanjiva Bimal
Pradeep Das
Kislay K. Sinha
spellingShingle Mohd. Imran Khan
Anshul Mishra
Sanjiva Bimal
Pradeep Das
Kislay K. Sinha
Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation
Canadian Journal of Biotechnology
author_facet Mohd. Imran Khan
Anshul Mishra
Sanjiva Bimal
Pradeep Das
Kislay K. Sinha
author_sort Mohd. Imran Khan
title Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation
title_short Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation
title_full Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation
title_fullStr Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation
title_full_unstemmed Ectopic Expression of Leishmanial DNA Polymerase β in Escherichia coli Confers Survival Advantage against Ultraviolet Radiation
title_sort ectopic expression of leishmanial dna polymerase β in escherichia coli confers survival advantage against ultraviolet radiation
publisher Science Planet Inc.
series Canadian Journal of Biotechnology
issn 2560-8304
publishDate 2017-10-01
description Leishmania donovani encounters oxidative environment in the host macrophage and expected to have robust DNA repair mechanisms. Base Excision Repair (BER), a predominant repair pathway in L. donovani remains unexplored. Presence of mitochondria in eukaryotes has been projected as a symbiotic relationship since long and the role of DNA polymerase β in repair of mitochondrial DNA has gained importance in recent past. We ectopically expressed Leishmania DNA polymerase β (LdPolβ) under inducible promoter in E. coli and found it is biologically active in vitro by using pUC19 as substrate. Further we checked its effect on sensitivity of E. coli to UV rays. We find that heterologous LdPolβ slows down the growth of E. coli and surprisingly, could protect it from lethal effects of UV to a large extent. Co-expression of leishmania DNA Ligase IIIα (LdLigIIIα) has a synergistic effect on survival advantage offered by LdPolβ. Survival advantage given LdPolβ in E. coli is reconfirmed by FACS analysis. Our observations indicate that LdPolβ is crucial for handling ROS induced toxicity inside the mitochondria of the parasite and for its survival inside host macrophage. This studied may lead to explore for finding of the importance of LdPolβ in survival against DNA damaging agents in L. donovani and its role in pathogenesis of leishmaniasis, it would help to discover new target and development of newer drug against Leishmaniasis.
url https://www.canadianjbiotech.com/CAN_J_BIOTECH/Archives/v1/Special Issue/cjb.2017-a157.pdf
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