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PLoS One ; 9(5): e97148, 2014.
Article in English | MEDLINE | ID: mdl-24817274

ABSTRACT

Understanding the mechanism that controls space-time coordination of elongation and division of Mycobacterium tuberculosis (Mtb), the causative agent of tuberculosis (TB), is critical for fighting the tubercle bacillus. Most of the numerous enzymes involved in the synthesis of Mycolic acid - Arabinogalactan-Peptidoglycan complex (MAPc) in the cell wall are essential in vivo. Using a dynamic approach, we localized Mtb enzymes belonging to the fatty acid synthase-II (FAS-II) complexes and involved in mycolic acid (MA) biosynthesis in a mycobacterial model of Mtb: M. smegmatis. Results also showed that the MA transporter MmpL3 was present in the mycobacterial envelope and was specifically and dynamically accumulated at the poles and septa during bacterial growth. This localization was due to its C-terminal domain. Moreover, the FAS-II enzymes were co-localized at the poles and septum with Wag31, the protein responsible for the polar localization of mycobacterial peptidoglycan biosynthesis. The dynamic localization of FAS-II and of the MA transporter with Wag31, at the old-growing poles and at the septum suggests that the main components of the mycomembrane may potentially be synthesized at these precise foci. This finding highlights a major difference between mycobacteria and other rod-shaped bacteria studied to date. Based on the already known polar activities of envelope biosynthesis in mycobacteria, we propose the existence of complex polar machinery devoted to the biogenesis of the entire envelope. As a result, the mycobacterial pole would represent the Achilles' heel of the bacillus at all its growing stages.


Subject(s)
Bacterial Proteins/metabolism , Biosynthetic Pathways/physiology , Cell Growth Processes/physiology , Multiprotein Complexes/biosynthesis , Mycobacterium tuberculosis/physiology , Mycolic Acids/metabolism , Fatty Acid Synthase, Type II/metabolism , Galactans/metabolism , Gene Knockout Techniques , Green Fluorescent Proteins , Microscopy, Video , Molecular Structure , Multiprotein Complexes/metabolism , Mycobacterium tuberculosis/enzymology , Mycobacterium tuberculosis/genetics , Peptidoglycan/metabolism , Spindle Poles/metabolism
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