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  4. Oxidized Mitochondrial DNA Engages TLR9 to Activate the NLRP3 Inflammasome in Myelodysplastic Syndromes
 
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Oxidized Mitochondrial DNA Engages TLR9 to Activate the NLRP3 Inflammasome in Myelodysplastic Syndromes

Journal
International journal of molecular sciences
Journal Volume
24
Journal Issue
4
Pages
3896
Date Issued
2023-02-15
Author(s)
Ward, Grace A
Dalton, Robert P
Meyer, Benjamin S
McLemore, Amy F
Aldrich, Amy L
Lam, Nghi B
Onimus, Alexis H
Vincelette, Nicole D
Trinh, Thu Le
Chen, Xianghong
Calescibetta, Alexandra R
Christiansen, Sean M
HSIN-AN HOU  
Johnson, Joseph O
Wright, Kenneth L
Padron, Eric
Eksioglu, Erika A
List, Alan F
DOI
10.3390/ijms24043896
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/631725
URL
https://api.elsevier.com/content/abstract/scopus_id/85149046797
Abstract
Myelodysplastic Syndromes (MDSs) are bone marrow (BM) failure malignancies characterized by constitutive innate immune activation, including NLRP3 inflammasome driven pyroptotic cell death. We recently reported that the danger-associated molecular pattern (DAMP) oxidized mitochondrial DNA (ox-mtDNA) is diagnostically increased in MDS plasma although the functional consequences remain poorly defined. We hypothesized that ox-mtDNA is released into the cytosol, upon NLRP3 inflammasome pyroptotic lysis, where it propagates and further enhances the inflammatory cell death feed-forward loop onto healthy tissues. This activation can be mediated via ox-mtDNA engagement of Toll-like receptor 9 (TLR9), an endosomal DNA sensing pattern recognition receptor known to prime and activate the inflammasome propagating the IFN-induced inflammatory response in neighboring healthy hematopoietic stem and progenitor cells (HSPCs), which presents a potentially targetable axis for the reduction in inflammasome activation in MDS. We found that extracellular ox-mtDNA activates the TLR9-MyD88-inflammasome pathway, demonstrated by increased lysosome formation, IRF7 translocation, and interferon-stimulated gene (ISG) production. Extracellular ox-mtDNA also induces TLR9 redistribution in MDS HSPCs to the cell surface. The effects on NLRP3 inflammasome activation were validated by blocking TLR9 activation via chemical inhibition and CRISPR knockout, demonstrating that TLR9 was necessary for ox-mtDNA-mediated inflammasome activation. Conversely, lentiviral overexpression of TLR9 sensitized cells to ox-mtDNA. Lastly, inhibiting TLR9 restored hematopoietic colony formation in MDS BM. We conclude that MDS HSPCs are primed for inflammasome activation via ox-mtDNA released by pyroptotic cells. Blocking the TLR9/ox-mtDNA axis may prove to be a novel therapeutic strategy for MDS.
Subjects
DAMP; MyD88; Myelodysplastic Syndromes; TLR9; Toll-like receptor; hematopoiesis; inflammasome; oxidized mitochondrial DNA; pyroptosis
Publisher
MDPI
Type
journal article

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