Oxidized mitochondrial nucleoids released by neutrophils drive type I interferon production in human lupus

Author:

Caielli Simone1,Athale Shruti1,Domic Bojana1,Murat Elise1,Chandra Manjari1,Banchereau Romain1,Baisch Jeanine1,Phelps Kate2,Clayton Sandra1,Gong Mei3,Wright Tracey45,Punaro Marilynn45,Palucka Karolina16,Guiducci Cristiana3,Banchereau Jacques6,Pascual Virginia15

Affiliation:

1. Baylor Institute for Immunology Research, Dallas, TX 75204

2. Live Cell Imaging Core, University of Texas Southwestern Medical Center, Dallas, TX 75263

3. Dynavax Technologies Corporation, Berkeley, CA 94710

4. Department of Pediatrics, University of Texas Southwestern Medical Center, Dallas, TX 75263

5. Texas Scottish Rite Hospital for Children, Dallas, TX 75219

6. The Jackson Laboratory Institute for Genomic Medicine, Farmington, CT 06030

Abstract

Autoantibodies against nucleic acids and excessive type I interferon (IFN) are hallmarks of human systemic lupus erythematosus (SLE). We previously reported that SLE neutrophils exposed to TLR7 agonist autoantibodies release interferogenic DNA, which we now demonstrate to be of mitochondrial origin. We further show that healthy human neutrophils do not complete mitophagy upon induction of mitochondrial damage. Rather, they extrude mitochondrial components, including DNA (mtDNA), devoid of oxidized (Ox) residues. When mtDNA undergoes oxidation, it is directly routed to lysosomes for degradation. This rerouting requires dissociation from the transcription factor A mitochondria (TFAM), a dual high-mobility group (HMG) protein involved in maintenance and compaction of the mitochondrial genome into nucleoids. Exposure of SLE neutrophils, or healthy IFN-primed neutrophils, to antiribonucleotide protein autoantibodies blocks TFAM phosphorylation, a necessary step for nucleoid dissociation. Consequently, Ox nucleoids accumulate within mitochondria and are eventually extruded as potent interferogenic complexes. In support of the in vivo relevance of this phenomenon, mitochondrial retention of Ox nucleoids is a feature of SLE blood neutrophils, and autoantibodies against Ox mtDNA are present in a fraction of patients. This pathway represents a novel therapeutic target in human SLE.

Funder

National Institutes of Health

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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