Leishmania major centrin knock-out parasites reprogram tryptophan metabolism to induce a pro-inflammatory response

利什曼原虫中心蛋白敲除寄生虫重新编程色氨酸代谢以诱导促炎反应

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作者:Timur Oljuskin, Nazli Azodi, Greta Volpedo, Parna Bhattacharya, Hannah L Markle, Shinjiro Hamano, Greg Matlashewski, Abhay R Satoskar, Sreenivas Gannavaram, Hira L Nakhasi

Abstract

Leishmaniasis is a parasitic disease that is prevalent in 90 countries, and yet no licensed human vaccine exists against it. Toward control of leishmaniasis, we have developed Leishmania major centrin gene deletion mutant strains (LmCen-/-) as a live attenuated vaccine, which induces a strong IFN-γ-mediated protection to the host. However, the immune mechanisms of such protection remain to be understood. Metabolomic reprogramming of the host cells following Leishmania infection has been shown to play a critical role in pathogenicity and shaping the immune response following infection. Here, we applied untargeted mass spectrometric analysis to study the metabolic changes induced by infection with LmCen-/- and compared those with virulent L. major parasite infection to identify the immune mechanism of protection. Our data show that immunization with LmCen-/- parasites, in contrast to virulent L. major infection promotes a pro-inflammatory response by utilizing tryptophan to produce melatonin and downregulate anti-inflammatory kynurenine-AhR and FICZ-AhR signaling.

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