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Polyketide synthase 12 is an in vivo essential source of novel mycolyl lipids in Mycobacterium tuberculosis

G. H. Babunovic, S. van der Niet, M. T. Gontijo, K. Abrahams, R. Sun, K. Bhatt, E. Meirav, C. Vilcheze, D. C. Young, L. Rosbach, I. Kanopaite, O. O. Adefisayo, K. M. Smith, A. M. Xet-Mull, V. G. Dellinger, E. Layre, C. M. Smith, W. R. Jacobs, A. Bhatt, G. S. Besra, D. M. Tobin, Q. Liu, N. van der Wel, D. B. Moody

Preprint

In the authors' words

Mycobacterium tuberculosis (Mtb) is a major pathogen worldwide that infects and transmits only among humans, yet nearly all in vivo virulence research occurs in non-human hosts. To overcome this central challenge in tuberculosis research, we leveraged a dataset of more than 50,000 sequenced isolates to identify Mtb genes that that are functionally preserved during natural infection, disease causation, and transmission between humans. This whole-genome ranking identified polyketide synthase 12 (pks12 ) as an exceptionally in vivo essential gene in human tuberculosis, which we validated in zebrafish and mouse models. Though Pks12 produces a mycoketide lipid in only trace amounts, pks12 deletion severely altered the host-facing surface and arabinoglycan architecture of Mtb. This amplified effect was explained through the discovery of mannosyl-{beta}-1-phosphomycoketide monomycolate (MPMMM), which is synthesized from the known Pks12 product at higher abundance by antigen 85 mycolyltransferases. Thus, we used a new host-facing genomic-metabolomic-phenotypic approach to discover the functions of an in vivo essential Mtb gene, which controls the physical structure of the Mtb-host interface.

Main resultThe abstract does not state a limitation.

Appeared: Saturday, September 26. bioRxiv. Preprint, not yet peer-reviewed.

DOI: 10.64898/2026.09.25.754250