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Essentiality of mmpL3 and impact of its silencing on Mycobacterium tuberculosis gene expression.


ABSTRACT: MmpL3 is an inner membrane transporter of Mycobacterium tuberculosis responsible for the export of trehalose momomycolate, a precursor of the mycobacterial outer membrane component trehalose dimycolate (TDM), as well as mycolic acids bound to arabinogalactan. MmpL3 represents an emerging target for tuberculosis therapy. In this paper, we describe the construction and characterization of an mmpL3 knockdown strain of M. tuberculosis. Downregulation of mmpL3 led to a stop in bacterial division and rapid cell death, preceded by the accumulation of TDM precursors. MmpL3 was also shown to be essential for growth in monocyte-derived human macrophages. Using RNA-seq we also found that MmpL3 depletion caused up-regulation of 47 genes and down-regulation of 23 genes (at least 3-fold change and false discovery rate ?1%). Several genes related to osmoprotection and metal homeostasis were induced, while several genes related to energy production and mycolic acids biosynthesis were repressed suggesting that inability to synthesize a correct outer membrane leads to changes in cellular permeability and a metabolic downshift.

SUBMITTER: Degiacomi G 

PROVIDER: S-EPMC5327466 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Essentiality of mmpL3 and impact of its silencing on Mycobacterium tuberculosis gene expression.

Degiacomi Giulia G   Benjak Andrej A   Madacki Jan J   Boldrin Francesca F   Provvedi Roberta R   Palù Giorgio G   Kordulakova Jana J   Cole Stewart T ST   Manganelli Riccardo R  

Scientific reports 20170227


MmpL3 is an inner membrane transporter of Mycobacterium tuberculosis responsible for the export of trehalose momomycolate, a precursor of the mycobacterial outer membrane component trehalose dimycolate (TDM), as well as mycolic acids bound to arabinogalactan. MmpL3 represents an emerging target for tuberculosis therapy. In this paper, we describe the construction and characterization of an mmpL3 knockdown strain of M. tuberculosis. Downregulation of mmpL3 led to a stop in bacterial division and  ...[more]

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