Sphingolipids associate with the chlamydial nucleoid and mark developmental transitions in Chlamydia trachomatis

Abstract Chlamydia trachomatis is an obligate intracellular bacterial pathogen and a leading cause of sexually transmitted infections worldwide. During its biphasic developmental cycle, infectious, non-replicative elementary bodies alternate with replicative reticulate bodies within a membrane-bound intracellular niche known as the inclusion. C. trachomatis relies heavily on host-derived metabolites, including sphingolipids, which are essential for inclusion integrity, bacterial growth and production of infectious progeny. Here, using expansion microscopy, we uncover an unexpected localization of sphingolipid derivatives within the highly condensed DNA nucleoids of elementary bodies. These sphingolipids are released from nucleoids prior to DNA decondensation during the elementary-to-reticulate body transition, the earliest phenotypic event in the complex developmental cycle of these bacteria. Thereafter, nucleoids undergo a characteristic DNA decondensation process that we visualized by expansion microscopy. By combining super-resolution imaging with a FRET-based metabolic tracking approach and lipidomics, we identified sphingomyelin derived from the sphingolipid analogues as the sphingolipid species predominantly associated with the condensing nucleoids of elementary bodies. Notably, reticulate bodies arrested in their developmental stage fail to accumulate sphingomyelin, suggesting a potential role for this lipid in stage-specific DNA condensation.

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Publication Details

Journal
Nature Communications
Published
2026-09-30
DOI
https://doi.org/10.1038/s41467-026-77974-3
Primary Topic
Reproductive tract infections research
Type
article
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article

Sphingolipids associate with the chlamydial nucleoid and mark developmental transitions in Chlamydia trachomatis

Burkhard Kleuser, Markus Sauer, Gregor L. Weiss, Thomas Rudel et al.
Nature Communications
Reproductive tract infections research
article

Sphingolipids associate with the chlamydial nucleoid and mark developmental transitions in Chlamydia trachomatis

Burkhard Kleuser, Markus Sauer, Gregor L. Weiss, Thomas Rudel, Fabian Schumacher, Jürgen Seibel, Marcel Rühling, Stefan Sachs, Louise Kersting, Fabienne Wagner, Till Epprecht, Julian Fink, Lina Girndt, Paul F. Köhling
article en

Abstract

Abstract Chlamydia trachomatis is an obligate intracellular bacterial pathogen and a leading cause of sexually transmitted infections worldwide. During its biphasic developmental cycle, infectious, non-replicative elementary bodies alternate with replicative reticulate bodies within a membrane-bound intracellular niche known as the inclusion. C. trachomatis relies heavily on host-derived metabolites, including sphingolipids, which are essential for inclusion integrity, bacterial growth and production of infectious progeny. Here, using expansion microscopy, we uncover an unexpected localization of sphingolipid derivatives within the highly condensed DNA nucleoids of elementary bodies. These sphingolipids are released from nucleoids prior to DNA decondensation during the elementary-to-reticulate body transition, the earliest phenotypic event in the complex developmental cycle of these bacteria. Thereafter, nucleoids undergo a characteristic DNA decondensation process that we visualized by expansion microscopy. By combining super-resolution imaging with a FRET-based metabolic tracking approach and lipidomics, we identified sphingomyelin derived from the sphingolipid analogues as the sphingolipid species predominantly associated with the condensing nucleoids of elementary bodies. Notably, reticulate bodies arrested in their developmental stage fail to accumulate sphingomyelin, suggesting a potential role for this lipid in stage-specific DNA condensation.

Nature CommunicationsVol. 17(1)
University of Zurich (CH), University of Würzburg (DE), Freie Universität Berlin (DE)
Openalex Percentile: Top 14%
Reproductive tract infections research
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