Abstract
The inner membrane domain (IMD) is a metabolically active and later ally discrete membrane domain initially discovered in Mycobacterium smegmatis. The IMD correlates both temporally and spatially with the polar cell envelope elongation in M. smegmatis. Whether or not a similar membrane domain exists in pathogenic species remains unknown. Here, we show that the IMD is a conserved membrane structure found in Mycobacterium tuberculosis. We used two independent approaches, density gradient fractionation of membrane domains and visualization of IMD-associ ated proteins through fluorescence microscopy, to determine the characteristics of the plasma membrane compartmentalization in M. tuberculosis. Proteomic analysis revealed that the IMD is enriched in metabolic enzymes that are involved in the synthesis of conserved cell envelope components such as arabinogalactan and phosphatidylinositol mannosides. Using a fluorescent protein fusion of IMD-associated proteins, we dem onstrated that this domain is concentrated in the subpolar region of the rod-shaped cells, where active cell envelope biosynthesis is taking place. Proteomic analysis further revealed the enrichment of enzymes involved in synthesis of phthiocerol dimycocero sates and phenolic glycolipids in the IMD. We validated the IMD association of two enzymes, α1,3-fucosyltransferase and fucosyl 4-O-methyltransferase, which are involved in the final maturation steps of phenolic glycolipid biosynthesis. Taken together, these data indicate that functional compartmentalization of membrane is an evolutionarily conserved feature found in both M. tuberculosis and M. smegmatis, and M. tuberculosis utilizes this membrane location to enrich biosynthetic enzymes for its surface-exposed lipid virulence factors.
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Puffal, J., Sparks, I. L., Brenner, J. R., Li, X., Leszyk, J. D., Hayashi, J. M., … Morita, Y. S. (2026). Compartmentalized cell envelope biosynthesis in Mycobacterium tuberculosis. MBio, 17(1), 1–16. https://doi.org/10.1128/mbio.02680-25
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