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Frataxin deficiency shifts metabolism to promote reactive microglia via glucose catabolism.
Sciarretta, Francesca; Zaccaria, Fabio; Ninni, Andrea; Ceci, Veronica; Turchi, Riccardo; Apolloni, Savina; Milani, Martina; Della Valle, Ilaria; Tiberi, Marta; Chiurchiù, Valerio; D'Ambrosi, Nadia; Pedretti, Silvia; Mitro, Nico; Volontè, Cinzia; Amadio, Susanna; Aquilano, Katia; Lettieri-Barbato, Daniele.
Afiliação
  • Sciarretta F; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Zaccaria F; IRCCS Fondazione Bietti, Rome, Italy.
  • Ninni A; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Ceci V; PhD Program in Evolutionary Biology and Ecology, University of Rome Tor Vergata, Rome, Italy.
  • Turchi R; IRCCS Fondazione Bietti, Rome, Italy.
  • Apolloni S; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Milani M; PhD Program in Evolutionary Biology and Ecology, University of Rome Tor Vergata, Rome, Italy.
  • Della Valle I; IRCCS Fondazione Bietti, Rome, Italy.
  • Tiberi M; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Chiurchiù V; PhD Program in Evolutionary Biology and Ecology, University of Rome Tor Vergata, Rome, Italy.
  • D'Ambrosi N; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Pedretti S; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Mitro N; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Volontè C; PhD Program in Cellular and Molecular Biology, University of Rome Tor Vergata, Rome, Italy.
  • Amadio S; Department Biology, University of Rome Tor Vergata, Rome, Italy.
  • Aquilano K; PhD Program in Cellular and Molecular Biology, University of Rome Tor Vergata, Rome, Italy.
  • Lettieri-Barbato D; Laboratory of Resolution of Neuroinflammation, IRCCS Santa Lucia Foundation, Rome, Italy.
Life Sci Alliance ; 7(7)2024 Jul.
Article em En | MEDLINE | ID: mdl-38631900
ABSTRACT
Immunometabolism investigates the intricate relationship between the immune system and cellular metabolism. This study delves into the consequences of mitochondrial frataxin (FXN) depletion, the primary cause of Friedreich's ataxia (FRDA), a debilitating neurodegenerative condition characterized by impaired coordination and muscle control. By using single-cell RNA sequencing, we have identified distinct cellular clusters within the cerebellum of an FRDA mouse model, emphasizing a significant loss in the homeostatic response of microglial cells lacking FXN. Remarkably, these microglia deficient in FXN display heightened reactive responses to inflammatory stimuli. Furthermore, our metabolomic analyses reveal a shift towards glycolysis and itaconate production in these cells. Remarkably, treatment with butyrate counteracts these immunometabolic changes, triggering an antioxidant response via the itaconate-Nrf2-GSH pathways and suppressing the expression of inflammatory genes. Furthermore, we identify Hcar2 (GPR109A) as a mediator involved in restoring the homeostasis of microglia without FXN. Motor function tests conducted on FRDA mice underscore the neuroprotective attributes of butyrate supplementation, enhancing neuromotor performance. In conclusion, our findings elucidate the role of disrupted homeostatic function in cerebellar microglia in the pathogenesis of FRDA. Moreover, they underscore the potential of butyrate to mitigate inflammatory gene expression, correct metabolic imbalances, and improve neuromotor capabilities in FRDA.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Succinatos / Ataxia de Friedreich / Frataxina Limite: Animals Idioma: En Revista: Life Sci Alliance Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Itália

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Succinatos / Ataxia de Friedreich / Frataxina Limite: Animals Idioma: En Revista: Life Sci Alliance Ano de publicação: 2024 Tipo de documento: Article País de afiliação: Itália