Mycobacterium tuberculosis Induction of Heme Oxygenase-1 Expression Is Dependent on Oxidative Stress and Reflects Treatment Outcomes
Résumé
The antioxidant enzyme heme oxygenase-1 (HO-1) is implicated in the pathogenesis of tuberculosis (TB) and has been proposed as a biomarker of active disease. Nevertheless, the mechanisms by which Mycobacterium tuberculosis induces HO-1 as well as how its expression is affected by HIV-1 co-infection and successful anti-tubercular therapy (ATT) are poorly understood. We found that HO-1 expression is markedly increased in rabbits, mice and non-human primates during experimental M. tuberculosis infection and gradually decreased during ATT. In addition, we examined circulating concentrations of HO-1 in a cohort of 130 HIV-1 co-infected and uninfected pulmonary TB patients undergoing ATT to investigate changes in expression of this biomarker in relation to HIV-1 status, radiological disease severity, and treatment outcome. We found that plasma levels of HO-1 were elevated in untreated HIV-1 co-infected TB patients and correlated positively with HIV-1 viral load and negatively with CD4+ T cell count. In both HIV-1 co-infected and M. tuberculosis monoinfected patients, HO-1 levels were substantially reduced during successful TB treatment but not in those who experienced treatment failure or subsequently relapsed. To further delineate the molecular mechanisms involved in induction of HO-1 by M. tuberculosis, we performed a series of in vitro experiments using mouse and human macrophages. We found that M. tuberculosis induced HO-1 expression requires NADPH-oxidase dependent reactive oxygen species (ROS) production induced by the early-secreted antigen ESAT-6 which in turn triggers nuclear translocation of the transcription factor NRF-2. These observations provide further insight into the utility of HO-1 as a biomarker of both disease and successful therapy in TB monoinfected and HIV-TB coinfected patients and reveal a previously undocumented pathway linking expression of the enzyme with oxidative stress.
Citer ce document
Accès au document
Voir sur le dépôt sourceCe document est hébergé sur son dépôt institutionnel d'origine.
Auteur(s)
Statistiques
Consultations : 3
Téléchargements : 0