NLRX1 inhibits the early stages of CNS inflammation and prevents the onset of spontaneous autoimmunity

Gharagozloo, Marjan and Mahmoud, Shaimaa and Simard, Camille and Yamamoto, Kenzo and Bobbala, Diwakar and Ilangumaran, Subburaj and Smith, Matthew D. and Lamontagne, Albert and Jarjoura, Samir and Denault, Jean-Bernard and Blais, Véronique and Gendron, Louis and Vilariño-Güell, Carles and Sadovnick, A. Dessa and Ting, Jenny P. and Calabresi, Peter A. and Amrani, Abdelaziz and Gris, Denis and Daneman, Richard (2019) NLRX1 inhibits the early stages of CNS inflammation and prevents the onset of spontaneous autoimmunity. PLOS Biology, 17 (9). e3000451. ISSN 1545-7885

[thumbnail of file (5).pdf] Text
file (5).pdf - Published Version

Download (4MB)

Abstract

Nucleotide-binding, leucine-rich repeat containing X1 (NLRX1) is a mitochondria-located innate immune sensor that inhibits major pro-inflammatory pathways such as type I interferon and nuclear factor-κB signaling. We generated a novel, spontaneous, and rapidly progressing mouse model of multiple sclerosis (MS) by crossing myelin-specific T-cell receptor (TCR) transgenic mice with Nlrx1−/− mice. About half of the resulting progeny developed spontaneous experimental autoimmune encephalomyelitis (spEAE), which was associated with severe demyelination and inflammation in the central nervous system (CNS). Using lymphocyte-deficient mice and a series of adoptive transfer experiments, we demonstrate that genetic susceptibility to EAE lies within the innate immune compartment. We show that NLRX1 inhibits the subclinical stages of microglial activation and prevents the generation of neurotoxic astrocytes that induce neuronal and oligodendrocyte death in vitro. Moreover, we discovered several mutations within NLRX1 that run in MS-affected families. In summary, our findings highlight the importance of NLRX1 in controlling the early stages of CNS inflammation and preventing the onset of spontaneous autoimmunity.

Item Type: Article
Subjects: Research Scholar Guardian > Biological Science
Depositing User: Unnamed user with email support@scholarguardian.com
Date Deposited: 11 Sep 2023 09:49
Last Modified: 11 Sep 2023 09:49
URI: http://science.sdpublishers.org/id/eprint/1440

Actions (login required)

View Item
View Item