Comparative proteomic analyses of avirulent, virulent and clinical strains of mycobacterium tuberculosis identify strain-specific patterns

Jhingan, Gagan Deep ; Kumari, Sangeeta ; Jamwal, Shilpa V. ; Kalam, Haroon ; Arora, Divya ; Jain, Neharika ; Kumaar, Lakshmi Krishna ; Samal, Areejit ; Rao, Kanury V. S. ; Kumar, Dhiraj ; Nandicoori, Vinay Kumar (2016) Comparative proteomic analyses of avirulent, virulent and clinical strains of mycobacterium tuberculosis identify strain-specific patterns Journal of Biological Chemistry, 291 (27). pp. 14257-14273. ISSN 0021-9258

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Official URL: http://www.jbc.org/content/291/27/14257.abstract

Related URL: http://dx.doi.org/10.1074/jbc.M115.666123

Abstract

Mycobacterium tuberculosis is an adaptable intracellular pathogen, existing in both dormant as well as active disease-causing states. Here, we report systematic proteomic analyses of four strains, H37Ra, H37Rv and clinical isolates BND and JAL, to determine the differences in protein expression patterns that contribute to their virulence and drug resistance. Resolution of lysates of the four strains by liquid chromatography, coupled to mass spectrometry analysis, identified a total of 2161 protein groups covering ∼54% of the predicted M. tuberculosis proteome. Label-free quantification analysis of the data revealed 257 differentially expressed protein groups. The differentially expressed protein groups could be classified into seven K-means cluster bins, which broadly delineated strain-specific variations. Analysis of the data for possible mechanisms responsible for drug resistance phenotype of JAL suggested that it could be due to a combination of overexpression of proteins implicated in drug resistance and the other factors. Expression pattern analyses of transcription factors and their downstream targets demonstrated substantial differential modulation in JAL, suggesting a complex regulatory mechanism. Results showed distinct variations in the protein expression patterns of Esx and mce1 operon proteins in JAL and BND strains, respectively. Abrogating higher levels of ESAT6, an important Esx protein known to be critical for virulence, in the JAL strain diminished its virulence, although it had marginal impact on the other strains. Taken together, this study reveals that strain-specific variations in protein expression patterns have a meaningful impact on the biology of the pathogen.

Item Type:Article
Source:Copyright of this article belongs to American Society for Biochemistry and Molecular Biology.
Keywords:Mycobacteria; Mycobacterium Tuberculosis; Protein Expression; Proteomics; Virulence Factor
ID Code:113484
Deposited On:25 May 2018 06:18
Last Modified:25 May 2018 06:18

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