Evidence map›Paper›PMID 42811321›Full record

ArticleCell communication and signaling : CCS2026

Intracellular Staphylococcus aureus triggers isolate-specific host transcriptional responses alongside TNF-R1 regulated cell fate decisions.

Annika Walter, Thorsten Bischler, Marvin Jungblut, Leonhard F Breitsprecher, Filip Vilotic, Johanna Beck, Lucia Hofmann, Nicole Schäfer, Tanja Ziesmann, Rico Franzkoch and 14 more

Abstract read
In one paragraph

Article in Cell communication and signaling : CCS, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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0citing papers in PubMed
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1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

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3 · Its place in the literature

Who cites it

0 citing papers in PubMed.

No citing paper in PubMed yet.

4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

24 authors.

Annika WalterDepartment of Infection Prevention and Infectious Diseases, University Hospital of Regensburg, University of Regensburg, Regensburg, 93053, Germany.
Thorsten BischlerCore Unit Systems Medicine, University of Würzburg, Würzburg, Germany.
Marvin JungblutRudolf-Virchow-Center for Integrative and Translational Bioimaging, University of Würzburg, Würzburg, Germany.
Leonhard F BreitsprecherCenter of Cellular Nanoanalytics Osnabrück, Integrated Bioimaging Facility, University of Osnabrück, Osnabrück, Germany.
Filip ViloticDepartment of Infection Prevention and Infectious Diseases, University Hospital of Regensburg, University of Regensburg, Regensburg, 93053, Germany.
Johanna BeckDepartment of Infection Prevention and Infectious Diseases, University Hospital of Regensburg, University of Regensburg, Regensburg, 93053, Germany.
Lucia HofmannInstitute for Molecular and Cellular Anatomy, University of Regensburg, Regensburg, Germany.
Nicole SchäferDepartment of Orthopedic Surgery, Experimental Orthopedics, Center for Medical Biotechnology (ZMB), University of Regensburg, Regensburg, Germany.
Tanja ZiesmannInstitute for Immunology, University Medical Center of the Johannes-Gutenberg University, Mainz, Germany.
Rico FranzkochCenter of Cellular Nanoanalytics Osnabrück, Integrated Bioimaging Facility, University of Osnabrück, Osnabrück, Germany.
Silke HärteisInstitute for Molecular and Cellular Anatomy, University of Regensburg, Regensburg, Germany.
Iana GadjalovaInstitute for Clinical Chemistry and Pathobiochemistry, School of Medicine, Technical University of Munich, Munich, Germany.
Ute DistlerInstitute for Immunology, University Medical Center of the Johannes-Gutenberg University, Mainz, Germany.
Gerti BeliuRudolf-Virchow-Center for Integrative and Translational Bioimaging, University of Würzburg, Würzburg, Germany.
Olympia-Ekaterini PsathakiCenter of Cellular Nanoanalytics Osnabrück, Integrated Bioimaging Facility, University of Osnabrück, Osnabrück, Germany.
Michael HenselCenter of Cellular Nanoanalytics Osnabrück, Integrated Bioimaging Facility, University of Osnabrück, Osnabrück, Germany.
Wulf Schneider-BrachertDepartment of Infection Prevention and Infectious Diseases, University Hospital of Regensburg, University of Regensburg, Regensburg, 93053, Germany.
Tom GräfenhanCore Unit Systems Medicine, University of Würzburg, Würzburg, Germany.
Thomas StempflCenter of Excellence for Fluorescent Bioanalytics (KFB), University of Regensburg, Regensburg, Germany.
Bärbel KieningerDepartment of Infection Prevention and Infectious Diseases, University Hospital of Regensburg, University of Regensburg, Regensburg, 93053, Germany.
Sabrina MühlenDepartment of Molecular Immunology, Ruhr-University Bochum, Bochum, Germany.
Volker AltDepartment of Trauma Surgery, University Hospital Regensburg, Regensburg, Germany.
Gopala-Krishna MannalaDepartment of Trauma Surgery, University Hospital Regensburg, Regensburg, Germany.
Jürgen FritschDepartment of Infection Prevention and Infectious Diseases, University Hospital of Regensburg, University of Regensburg, Regensburg, 93053, Germany. Juergen.Fritsch@ukr.de.ORCID https://orcid.org/0000-0001-6909-6096

Funding

Deutsche Forschungsgemeinschaft 318346496, 446605368Deutsche Forschungsgemeinschaft 422048538, 467522186Deutsche Forschungsgemeinschaft 547933897
6 · The paper itself

Abstract

backgroundStaphylococcus aureus (S. aureus) is an increasingly recognized intracellular pathogen, yet infection outcomes vary with bacterial isolate and host cell type. Many mechanisms underlying these differences remain poorly understood. This study investigated how distinct intracellular S. aureus isolates influence host signaling programs and infection outcomes by modulating cell death pathways and TNF-R1 dependent regulation of host cell fates across different human cell lines.

methodsThe intracellular localization of four S. aureus isolates was analyzed via transmission electron microscopy (TEM), structured illumination microscopy (SIM), serial block-face scanning electron microscopy (SBF-SEM), and imaging flow cytometry. The transcriptional reprogramming of infected U937 monocytes was examined via mRNA sequencing. Infection outcomes and early TNF-R1 surface expression were characterized and compared with those of A549 and SaOS-2 cell lines employing flow cytometry and Western blot analysis, characterizing host cell death mechanisms in both wild-type and TNF-R1‒deficient backgrounds.

resultsAll S. aureus isolates localized to the endo-lysosomal and cytosolic compartments but were also frequently detected in nucleo-proximal regions. In U937 monocytes, infection induced a conserved stress signature alongside isolate‑specific transcriptional programs divergently affecting inflammation, metabolism, and cell fate, which was markedly attenuated in response to the chronic‑infection isolate EDCC 5464. Similarly, cell death outcomes were isolate‑ and cell type-dependent, involved caspase activation consistent with intrinsic and extrinsic apoptosis signaling, and caspase-1 activation at distinct temporal dynamics. TNF‑R1 loss initially delayed but later increased later isolate-independent cytotoxicity. Higher TNF-R1 surface expression was triggered in U937 monocytes by all viable isolates, but only by EDCC 5464 in SaOS-2 and A549 cells. Viability of the latter was only marginally influenced by isolate or TNF-R1 loss.

conclusionsThese results highlight the multilayered determinants governing intracellular S. aureus survival, host cell susceptibility, and noncanonical intracellular localization that warrants further investigation. The TNF/TNF-R1 axis appears to critically influence regulated host defenses during early infection stages in a tissue-specific manner, though its mechanistic contribution remains to be fully elucidated. Together with distinct isolate-driven gene expression profiles of U937 monocytes, infection risks under TNF-targeted therapies and the contribution of S. aureus heterogeneity should be considered in the design of future host-directed treatment strategies.

Indexed as

Host-Pathogen InteractionsIntracellular SpaceReceptors, Tumor Necrosis Factor, Type IStaphylococcus aureusTranscription, GeneticApoptosisHumansMonocytesSignal TransductionU937 CellsReceptors, Tumor Necrosis Factor, Type IApoptosisHost cell deathHost‒pathogen interactionsHost responseIntracellular infectionPerinuclearStaphylococcus aureusTNF receptor 1TNF-αTranscriptomics

Identifiers

PMID42811321
PMCPMC13621601

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.