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DHX9 Strengthens Atherosclerosis Progression By Promoting Inflammation in Macrophages
Ning Huangfu1,2,3, Hongchuang Ma1,2,3, Mengyun Tian4
1Department of Cardiology, Ningbo First Hospital, Ningbo, 315000, China.
Insights
DExH-Box helicase 9 (DHX9) promotes atherosclerosis by increasing inflammation in macrophages. Inhibiting DHX9 reduces inflammation and slows disease progression, suggesting DHX9 as a potential therapeutic target for atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Molecular Medicine
- Immunology
Background:
- Atherosclerosis (AS) is a primary cause of cerebrovascular disease, with macrophages playing a critical role.
- DExH-Box helicase 9 (DHX9) is an autoantigen linked to inflammation in systemic lupus erythematosus.
Purpose of the Study:
- To investigate DHX9's role in AS development, particularly in macrophage-mediated inflammation.
- To explore DHX9 as a potential therapeutic target for AS.
Main Methods:
- Assessed DHX9 expression in macrophages, PBMCs from coronary artery disease (CAD) patients, and an ApoE-/- mouse AS model.
- Utilized DHX9 knockdown via adeno-associated virus (AAV) in vivo.
- Examined DHX9's interaction with p65 and its effect on the DHX9-p65-RNA Polymerase II complex.
Main Results:
- DHX9 expression is elevated in macrophages and PBMCs from CAD patients.
- DHX9 knockdown inhibited lipid uptake, reduced pro-inflammatory factors, and decreased monocyte adhesion.
- DHX9 interacts with p65, enhancing inflammatory factor production and AS progression in mice.
Conclusions:
- DHX9 promotes AS progression by exacerbating inflammation in macrophages.
- Targeting DHX9 may offer a novel therapeutic strategy for atherosclerosis.
Abstract:
Atherosclerosis (AS) is the main cause of cerebrovascular diseases, and macrophages play important roles in atherosclerosis. DExH-Box helicase 9 (DHX9), as a member of DExD/H-box RNA helicase superfamily II, is identified as an autoantigen in the sera of systemic lupus erythematosus patients to trigger inflammation. The aim of this study was to investigate whether DHX9 is involved in AS development, especially in macrophages-mediated-inflammatory responses. We find that DHX9 expression is significantly increased in oxLDL or interferon-γ-treated macrophages and peripheral blood mononuclear cells (PBMCs) from patients with coronary artery disease (CAD). Knockdown of DHX9 inhibits lipid uptake and pro-inflammatory factors expression in macrophages, and ameliorates TNF-α-mediated monocyte adhesion capacity. Furthermore, we find that oxLDL stimulation promotes DHX9 interaction with p65 in macrophages, and further enhances the transcriptional activity of DHX9-p65-RNA Polymerase II complex to produce inflammatory factors. Moreover, using ApoE -/- mice fed with western diet to establish AS model, we find that knockdown of DHX9 mediated by adeno-associated virus-Sh-DHX9 through tail vein injection evidently alleviates AS progression in vivo. Finally, we also find that knockdown of DHX9 inhibits p65 activation, inflammatory factors expression, and the transcriptional activity of p65-RNA Polymerase II complex in PBMCs from patients with CAD. Overall, these results indicate that DHX9 promotes AS progression by enhancing inflammation in macrophages, and suggest DHX9 as a potential target for developing therapeutic drug.
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