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1.
J Virol ; 97(10): e0095923, 2023 10 31.
Artigo em Inglês | MEDLINE | ID: mdl-37772825

RESUMO

IMPORTANCE: Viral encephalomyelitis outcome is dependent on host responses to neuronal infection. Interferon (IFN) is an important component of the innate response, and IFN regulatory factor (IRF) 7 is an inducible transcription factor for the synthesis of IFN-α. IRF7-deficient mice develop fatal paralysis after CNS infection with Sindbis virus, while wild-type mice recover. Irf7 -/- mice produce low levels of IFN-α but high levels of IFN-ß with induction of IFN-stimulated genes, so the reason for this difference is not understood. The current study shows that Irf7 -/- mice developed inflammation earlier but failed to clear virus from motor neuron-rich regions of the brainstem and spinal cord. Levels of IFN-γ and virus-specific antibody were comparable, indicating that IRF7 deficiency does not impair expression of these known viral clearance factors. Therefore, IRF7 is either necessary for the neuronal response to currently identified mediators of clearance or enables the production of additional antiviral factor(s) needed for clearance.


Assuntos
Infecções por Alphavirus , Encefalomielite , Fator Regulador 7 de Interferon , Vírus Sindbis , Animais , Camundongos , Infecções por Alphavirus/imunologia , Infecções por Alphavirus/virologia , Tronco Encefálico/virologia , Encefalomielite/imunologia , Encefalomielite/virologia , Inflamação/virologia , Fator Regulador 7 de Interferon/deficiência , Fator Regulador 7 de Interferon/genética , Fator Regulador 7 de Interferon/metabolismo , Interferon beta/imunologia , Interferon beta/metabolismo , Neurônios Motores/virologia , Vírus Sindbis/imunologia , Medula Espinal/virologia
2.
PLoS Pathog ; 18(5): e1010556, 2022 05.
Artigo em Inglês | MEDLINE | ID: mdl-35576231

RESUMO

Antibiotic tolerance is typically associated with a phenotypic change within a bacterial population, resulting in a transient decrease in antibiotic susceptibility that can contribute to treatment failure and recurrent infections. Although tolerant cells may emerge prior to treatment, the stress of prolonged antibiotic exposure can also promote tolerance. Here, we sought to determine how Yersinia pseudotuberculosis responds to doxycycline exposure, to then verify if these gene expression changes could promote doxycycline tolerance in culture and in our mouse model of infection. Only four genes were differentially regulated in response to a physiologically-relevant dose of doxycycline: osmB and ompF were upregulated, tusB and cnfy were downregulated; differential expression also occurred during doxycycline treatment in the mouse. ompF, tusB and cnfy were also differentially regulated in response to chloramphenicol, indicating these could be general responses to ribosomal inhibition. cnfy has previously been associated with persistence and was not a major focus here. We found deletion of the OmpF porin resulted in increased antibiotic accumulation, suggesting expression may promote diffusion of doxycycline out of the cell, while OsmB lipoprotein had a minor impact on antibiotic permeability. Overexpression of tusB significantly impaired bacterial survival in culture and in the mouse, suggesting that tRNA modification by tusB, and the resulting impacts on translational machinery, promotes survival during treatment with an antibiotic classically viewed as bacteriostatic. We believe this may be the first observation of bactericidal activity of doxycycline under physiological conditions, which was revealed by reversing tusB downregulation.


Assuntos
Yersinia pseudotuberculosis , Animais , Antibacterianos/metabolismo , Antibacterianos/farmacologia , Doxiciclina/metabolismo , Doxiciclina/farmacologia , Camundongos , Permeabilidade , RNA de Transferência/metabolismo , Yersinia pseudotuberculosis/genética , Yersinia pseudotuberculosis/metabolismo
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