Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra

Background: Mycobacterium tuberculosis (MTB) H37Ra is an attenuated tubercle bacillus closely related to the virulent type strain MTB H37Rv. In spite of extensive study, variation in virulence between the MTB H37Rv and MTB H37Ra strains is still to be understood. The difference in protein expression...

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Main Authors: Lingaraja Jena, Supriya Kashikar, Satish Kumar, Bhaskar C Harinath
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2013-01-01
Series:International Journal of Mycobacteriology
Subjects:
MTB
Online Access:http://www.ijmyco.org/article.asp?issn=2212-5531;year=2013;volume=2;issue=4;spage=220;epage=226;aulast=Jena
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spelling doaj-0984cf5dfb8947289aeb07dc388e8be42020-11-24T23:42:44ZengWolters Kluwer Medknow PublicationsInternational Journal of Mycobacteriology2212-55312212-554X2013-01-012422022610.1016/j.ijmyco.2013.10.004Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37RaLingaraja JenaSupriya KashikarSatish KumarBhaskar C HarinathBackground: Mycobacterium tuberculosis (MTB) H37Ra is an attenuated tubercle bacillus closely related to the virulent type strain MTB H37Rv. In spite of extensive study, variation in virulence between the MTB H37Rv and MTB H37Ra strains is still to be understood. The difference in protein expression or structure due to mutation may probably be an important factor for the virulence property of MTB H37Rv strain. Methods: In this study, a whole proteome comparison between these two strains was carried out using bioinformatics approaches to elucidate differences in their protein sequences. Results: On comparison of whole proteome using NCBI standalone BLAST program between these two strains, 3759 identical proteins in both the strains out of 4003 proteins were revealed in MTB H37Rv and 4034 proteins were revealed in MTB H37Ra; 244 proteins of MTB H37Rv and 260 proteins of MTB H37Ra were found to be non-identical. A total of 172 proteins were identified with mutations (Insertions/deletions/substitutions) in MTB H37Ra while 53 proteins of MTB H37Rv and 85 proteins of MTB H37Ra were found to be distinct. Among 244 non-identical proteins, 19 proteins were reported to have an important biological function; In this study, mutation was shown in these proteins of MTB H37Ra. Conclusion: This study reports the protein differences with mutations between MTB H37Rv and H37Ra, which may help in better understanding the pathogenesis and virulence properties of MTB H37Rv.http://www.ijmyco.org/article.asp?issn=2212-5531;year=2013;volume=2;issue=4;spage=220;epage=226;aulast=JenaMTBProteomeVirulenceComparative proteomicsBioinformatics
collection DOAJ
language English
format Article
sources DOAJ
author Lingaraja Jena
Supriya Kashikar
Satish Kumar
Bhaskar C Harinath
spellingShingle Lingaraja Jena
Supriya Kashikar
Satish Kumar
Bhaskar C Harinath
Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra
International Journal of Mycobacteriology
MTB
Proteome
Virulence
Comparative proteomics
Bioinformatics
author_facet Lingaraja Jena
Supriya Kashikar
Satish Kumar
Bhaskar C Harinath
author_sort Lingaraja Jena
title Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra
title_short Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra
title_full Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra
title_fullStr Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra
title_full_unstemmed Comparative proteomic analysis of Mycobacterium tuberculosis strain H37Rv versus H37Ra
title_sort comparative proteomic analysis of mycobacterium tuberculosis strain h37rv versus h37ra
publisher Wolters Kluwer Medknow Publications
series International Journal of Mycobacteriology
issn 2212-5531
2212-554X
publishDate 2013-01-01
description Background: Mycobacterium tuberculosis (MTB) H37Ra is an attenuated tubercle bacillus closely related to the virulent type strain MTB H37Rv. In spite of extensive study, variation in virulence between the MTB H37Rv and MTB H37Ra strains is still to be understood. The difference in protein expression or structure due to mutation may probably be an important factor for the virulence property of MTB H37Rv strain. Methods: In this study, a whole proteome comparison between these two strains was carried out using bioinformatics approaches to elucidate differences in their protein sequences. Results: On comparison of whole proteome using NCBI standalone BLAST program between these two strains, 3759 identical proteins in both the strains out of 4003 proteins were revealed in MTB H37Rv and 4034 proteins were revealed in MTB H37Ra; 244 proteins of MTB H37Rv and 260 proteins of MTB H37Ra were found to be non-identical. A total of 172 proteins were identified with mutations (Insertions/deletions/substitutions) in MTB H37Ra while 53 proteins of MTB H37Rv and 85 proteins of MTB H37Ra were found to be distinct. Among 244 non-identical proteins, 19 proteins were reported to have an important biological function; In this study, mutation was shown in these proteins of MTB H37Ra. Conclusion: This study reports the protein differences with mutations between MTB H37Rv and H37Ra, which may help in better understanding the pathogenesis and virulence properties of MTB H37Rv.
topic MTB
Proteome
Virulence
Comparative proteomics
Bioinformatics
url http://www.ijmyco.org/article.asp?issn=2212-5531;year=2013;volume=2;issue=4;spage=220;epage=226;aulast=Jena
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