Unanticipated global emergence and evolution of Pneumocystis jirovecii mutations and resistance driven by a human-targeted drug.

Nearly all known cases of antimicrobial resistance have been linked to agents that directly target microbes. This paradigm overlooks other drivers of microbial evolution and resistance. Here, we report compelling evidence of resistance-associated mutations in Pneumocystis jirovecii, a high-priority fungal pathogen designated by WHO as having unknown resistance. These mutations emerged under selective pressure from mycophenolic acid (MPA), a widely used immunosuppressant not used for Pneumocystis pneumonia (PCP) treatment. A potent inhibitor of inosine monophosphate dehydrogenase (IMPDH), MPA has been linked to altered P. jirovecii susceptibility in solid organ transplant (SOT) recipients. Genetic analysis of 163 P. jirovecii samples from PCP outbreaks in SOT recipients and nontransplant controls across six countries identified six impdh mutations, four of which were previously unreported. These mutations showed strong associations with prior MPA exposure, geographic segregation, and temporal shifts. They arose independently in 11 distinct strains worldwide between 2005 and 2019, with evidence of switching within and between strains, suggesting ongoing adaptive evolution. Structural modeling predicted that these mutations reduced IMPDH stability and MPA binding; accordingly, all mutations conferred MPA resistance in enzyme inhibition assays. Our findings uncover the unanticipated global emergence of multiple resistance-associated mutations in P. jirovecii driven by a human-targeted immunosuppressant, likely conferring a survival advantage in SOT recipients and facilitating transmission and outbreaks. These results challenge the current status quo on P. jirovecii's unknown resistance, calling for reevaluating immunosuppressive strategies and infection control measures and highlighting the broader potential for other pathogens to evolve under selective pressures imposed by human-targeted therapies.

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Publication Details

Journal
Open Access CRIS of the University of Bern
Published
2026-09-16
DOI
https://doi.org/10.48620/101217
Primary Topic
Pneumocystis jirovecii pneumonia detection and treatment
Type
article
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article

Unanticipated global emergence and evolution of Pneumocystis jirovecii mutations and resistance driven by a human-targeted drug.

Nicolas J. Mueller, Joseph A. Kovacs, Cédric Hirzel, Alexia Cusini et al.
Open Access CRIS of the University of Bern
Pneumocystis jirovecii pneumonia detection and treatment
article

Unanticipated global emergence and evolution of Pneumocystis jirovecii mutations and resistance driven by a human-targeted drug.

Nicolas J. Mueller, Joseph A. Kovacs, Cédric Hirzel, Alexia Cusini, Norihiko Goto, 彭丽, J. F. Sun, Sara Gianella, Andreas Arendtsen Rostved, Andreas Sing, Lizbeth Hedstrom, Lingai Pan, Monica Sassi, Steven M. Ewell, Regina Konrad, Thomas Fehr, Ming Hao, Akanchhya Khanal, Laura F. Walsh, Hirohisa Yazaki, Tomozumi Imamichi, Laurence Huang, Jannik Helweg-Larsen, Xilong Deng, Marwan M Azar, Weizhong Chang, Benjamin Spielman, Liang Ma, Yubao Wang, Shinichi Oka, Grace Handley
article en

Abstract

Nearly all known cases of antimicrobial resistance have been linked to agents that directly target microbes. This paradigm overlooks other drivers of microbial evolution and resistance. Here, we report compelling evidence of resistance-associated mutations in Pneumocystis jirovecii, a high-priority fungal pathogen designated by WHO as having unknown resistance. These mutations emerged under selective pressure from mycophenolic acid (MPA), a widely used immunosuppressant not used for Pneumocystis pneumonia (PCP) treatment. A potent inhibitor of inosine monophosphate dehydrogenase (IMPDH), MPA has been linked to altered P. jirovecii susceptibility in solid organ transplant (SOT) recipients. Genetic analysis of 163 P. jirovecii samples from PCP outbreaks in SOT recipients and nontransplant controls across six countries identified six impdh mutations, four of which were previously unreported. These mutations showed strong associations with prior MPA exposure, geographic segregation, and temporal shifts. They arose independently in 11 distinct strains worldwide between 2005 and 2019, with evidence of switching within and between strains, suggesting ongoing adaptive evolution. Structural modeling predicted that these mutations reduced IMPDH stability and MPA binding; accordingly, all mutations conferred MPA resistance in enzyme inhibition assays. Our findings uncover the unanticipated global emergence of multiple resistance-associated mutations in P. jirovecii driven by a human-targeted immunosuppressant, likely conferring a survival advantage in SOT recipients and facilitating transmission and outbreaks. These results challenge the current status quo on P. jirovecii's unknown resistance, calling for reevaluating immunosuppressive strategies and infection control measures and highlighting the broader potential for other pathogens to evolve under selective pressures imposed by human-targeted therapies.

Open Access CRIS of the University of Bern
Good health and well-being
Openalex Percentile: Top 10%
Pneumocystis jirovecii pneumonia detection and treatment
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