Positive allosteric modulation of indoleamine 2,3-dioxygenase 1 restrains neuroinflammation

Author:

Mondanelli Giada,Coletti Alice,Greco Francesco Antonio,Pallotta Maria Teresa,Orabona CirianaORCID,Iacono Alberta,Belladonna Maria Laura,Albini Elisa,Panfili Eleonora,Fallarino Francesca,Gargaro Marco,Manni Giorgia,Matino Davide,Carvalho Agostinho,Cunha Cristina,Maciel Patricia,Di Filippo Massimiliano,Gaetani Lorenzo,Bianchi Roberta,Vacca Carmine,Iamandii Ioana Maria,Proietti Elisa,Boscia Francesca,Annunziato Lucio,Peppelenbosch Maikel,Puccetti PaoloORCID,Calabresi Paolo,Macchiarulo Antonio,Santambrogio LauraORCID,Volpi ClaudiaORCID,Grohmann UrsulaORCID

Abstract

l-tryptophan (Trp), an essential amino acid for mammals, is the precursor of a wide array of immunomodulatory metabolites produced by the kynurenine and serotonin pathways. The kynurenine pathway is a paramount source of several immunoregulatory metabolites, including l-kynurenine (Kyn), the main product of indoleamine 2,3-dioxygenase 1 (IDO1) that catalyzes the rate-limiting step of the pathway. In the serotonin pathway, the metabolite N-acetylserotonin (NAS) has been shown to possess antioxidant, antiinflammatory, and neuroprotective properties in experimental autoimmune encephalomyelitis (EAE), an animal model of multiple sclerosis (MS). However, little is known about the exact mode of action of the serotonin metabolite and the possible interplay between the 2 Trp metabolic pathways. Prompted by the discovery that NAS neuroprotective effects in EAE are abrogated in mice lacking IDO1 expression, we investigated the NAS mode of action in neuroinflammation. We found that NAS directly binds IDO1 and acts as a positive allosteric modulator (PAM) of the IDO1 enzyme in vitro and in vivo. As a result, increased Kyn will activate the ligand-activated transcription factor aryl hydrocarbon receptor and, consequently, antiinflammatory and immunoregulatory effects. Because NAS also increased IDO1 activity in peripheral blood mononuclear cells of a significant proportion of MS patients, our data may set the basis for the development of IDO1 PAMs as first-in-class drugs in autoimmune/neuroinflammatory diseases.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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