Uncoupling mycomembrane biogenesis from mycolic acid synthesis reveals a distinct role for mycoloyltransferases in mycobacterial cell division.
de Sousa d'Auria, C.; Constantinesco-Becker, F.; Prigent, M.; Taiki, F.; BOULOGNE, C.; Leclercq, L.-D.; Rosier, L.; Bourge, M.; Costache, V.; Chami, M.; Labarre, C.; Houssin, C.; Wehenkel, A. M.; Leforestier, A.; Guerardel, y.; Bayan, N.
Show abstract
Bacteria of the order Mycobacteriales, including the genera Mycobacterium and Corynebacterium, possess a unique outer membrane, termed the mycomembrane, which is structurally and chemically distinct from the lipopolysaccharide-containing outer membrane of Gram-negative bacteria. A defining feature of the mycomembrane is its enrichment in mycolic acids, long-chain -branched, {beta}-hydroxylated fatty acids that occur as trehalose monomycolate (TMM), trehalose dimycolate (TDM), or are esterified to arabinogalactan, an unusual polymer that is itself covalently linked to peptidoglycan (PG). Mycoloyltransferases are Mycobacteriales-specific enzymes described to catalyze the transfer of mycolic acids from trehalose monomycolate (TMM) to various cell envelope acceptors, including trehalose and arabinogalactan. In several species, including Mycobacterium tuberculosis, these proteins are essential for viability; however, their occurrence as multiple paralogs with partially redundant functions has hindered the precise assignment of their cellular roles. Previously, we showed that Corynebacterium glutamicum remains viable in the absence of mycolic acids, and thus without a mycomembrane, following deletion of pks, the gene required for mycolic acid biosynthesis. Building on this finding, we systematically deleted all genes encoding mycoloyltransferases in C. glutamicum to further disclose their collective function in the cell. The resulting {Delta}myts mutant lacked arabinogalactan-bound mycolates and TDM, yet continued to synthesize TMM. Despite the high abundance of this major glycolipid, the {Delta}myts strain failed to assemble a mycomembrane and displayed pronounced cell aggregation. Unexpectedly, deletion of mycoloyltransferases also caused very severe defects in cell division and morphogenesis that are not observed in a {Delta}pks strain unable to synthesize mycolic acids. Together, these results demonstrate that mycoloyltransferases are essential for mycomembrane assembly but dispensable for TMM biosynthesis, and reveal an unexpected role for these enzymes in cell division that is independent of their canonical mycolic acid transfer activity. SIGNIFICANCEHow the mycomembrane is assembled and anchored to the cell wall remains a central question in Mycobacteriales, where this outer membrane is necessary for envelope integrity and intrinsic antibiotic resistance. By genetically separating mycolic acid synthesis from their incorporation into the outer membrane, we identify arabinogalactan-linked mycolates as the critical determinant for initiating membrane assembly. Unexpectedly, we also uncover a role for mycoloyltransferases beyond their canonical function in lipid metabolism, revealing a functional link with cell division. These findings point to a critical role of Mycoloyltransferases in the coordination between outer membrane biogenesis and bacterial cytokinesis.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- FhaA plays a key role in mycobacterial polar elongation and 1 asymmetric growth 96%
- Unipolar peptidoglycan synthesis in the Rhizobiales requires an essential class A penicillin-binding protein 96%
- Modulation of bacterial cell size and growth rate via activation of a cell envelope stress response 95%
Similar papers in this journal
- Enterococcal cell wall remodelling underpins pathogenesis via the release of the Enteroccocal Polysaccharide Antigen (EPA) 96%
- Fluorescent secreted bacterial effectors reveal active intravacuolar proliferation of Listeria monocytogenes in epithelial cells 96%
- SPI-1 virulence gene expression modulates motility of Salmonella Typhimurium in a proton motive force- and adhesins-dependent manner 95%
Similar papers in this journal
Similar papers in this journal
- Activation of ChvG-ChvI regulon by cell wall stress confers resistance to β-lactam antibiotics and initiates surface spreading in Agrobacterium tumefaciens 96%
- A novel peptidoglycan deacetylase modulates daughter cell separation in E. coli 96%
- Cell splitting in Staphylococcus aureus is controlled by an adaptor protein facilitating degradation of a peptidoglycan hydrolase 95%
Similar papers in this journal
- Spatial structure formation by RsmE-regulated extracellular secretions in Pseudomonas fluorescens Pf0-1 94%
- Intracellular glutamine fluctuates with nitrogen availability and regulates Mycobacterium smegmatis biofilm formation 94%
- MmpL3, Wag31 and PlrA are involved in coordinating polar growth with peptidoglycan metabolism and nutrient availability 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.