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Cell Detoxification of Secondary Metabolites by P4-ATPase-mediated Vesicle Transport

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Journal Elife
Specialty Biology
Date 2023 Jul 5
PMID 37405392
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Abstract

Mechanisms for cellular detoxification of drug compounds are of significant interest in human health. Cyclosporine A (CsA) and tacrolimus (FK506) are widely known antifungal and immunosuppressive microbial natural products. However, both compounds can result in significant side effects when used as immunosuppressants. The insect pathogenic fungus shows resistance to CsA and FK506. However, the mechanisms underlying the resistance have remained unknown. Here, we identify a P4-ATPase gene, , from the fungus, which confers resistance a unique vesicle mediated transport pathway that targets the compounds into detoxifying vacuoles. Interestingly, the expression of in plants promotes resistance to the phytopathogenic fungus via detoxification of the mycotoxin cinnamyl acetate using a similar pathway. Our data reveal a new function for a subclass of P4-ATPases in cell detoxification. The P4-ATPases conferred cross-species resistance can be exploited for plant disease control and human health protection.

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Glyoxal oxidase-mediated detoxification of reactive carbonyl species contributes to virulence, stress tolerance, and development in a pathogenic fungus.

Liu X, Keyhani N, Liu H, Zhang Y, Xia Y, Cao Y PLoS Pathog. 2024; 20(7):e1012431.

PMID: 39078845 PMC: 11315307. DOI: 10.1371/journal.ppat.1012431.

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