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P2X7 receptor regulates EMMPRIN and MMP‑9 expression through AMPK/MAPK signaling in PMA‑induced macrophages
Lu Lin1, Shanjun Huang1, Zhouyang Zhu1
1The Key Laboratory of Cardiovascular Disease of Wenzhou, Department of Cardiology, Cardiac Center, The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, Zhejiang 325000, P.R. China.
Abstract:
The rupture of atherosclerotic plaques may result in the formation of thrombi, which may induce subsequent cardiac events such as acute myocardial infarction. Overproduction of matrix metalloproteinases (MMPs) and extracellular matrix metalloproteinase inducers (EMMPRINs) by monocytes and macrophages may lead to rupture of atherosclerotic plaques as a result of the degradation of the extracellular matrix. The purinergic 2X7 receptor (P2X7R) is expressed in macrophages that are assembled in atherosclerotic lesions of human carotid arteries. P2X7R may serve a crucial role in the development of atherosclerosis; therefore, the present study aimed to determine whether P2X7R regulated the expression of EMMPRIN and MMP‑9 in phorbol 12‑myristate 13‑acetate (PMA)‑induced macrophages. In addition, the potential molecular mechanisms involved in this process were investigated. THP‑1 human monocytic cells were pretreated with A‑438079 (a specific inhibitor of P2X7R) for 1 h and subsequently incubated with or without PMA for 48 h. Exposure to A‑438079 significantly decreased the expression of MMP‑9 and EMMPRIN in the PMA‑induced macrophages and attenuated the activation (phosphorylation) of mitogen‑activated protein kinase (MAPK) signaling, including c‑Jun N‑terminal kinase, p38 and extracellular signal‑regulated kinase. The present study also demonstrated that 5'‑AMP‑activated protein kinase (AMPK) was activated by PMA exposure during differentiation from monocytes to macrophages. This activation was reversed by A‑438079 treatment through the inhibition of P2X7R expression. These results suggested that the inhibition of P2X7R may be able to suppress the AMPK/MAPK signaling pathway and consequently downregulate both EMMPRIN and MMP‑9 expression in PMA‑induced macrophages.
Insights
Inhibiting the P2X7 receptor (P2X7R) in macrophages reduces matrix metalloproteinase (MMP) and EMMPRIN expression, key factors in atherosclerotic plaque rupture. This suppression occurs via the AMPK/MAPK signaling pathway, offering a potential therapeutic target for atherosclerosis.
Area of Science:
- Cardiovascular Biology
- Immunology
- Molecular Medicine
Background:
- Atherosclerotic plaque rupture, leading to cardiac events, is linked to matrix metalloproteinases (MMPs) and their inducers (EMMPRINs).
- Monocytes and macrophages in atherosclerotic lesions express the purinergic 2X7 receptor (P2X7R), implicated in disease development.
Purpose of the Study:
- To investigate if P2X7R regulates EMMPRIN and MMP-9 expression in macrophages stimulated with phorbol 12-myristate 13-acetate (PMA).
- To explore the underlying molecular mechanisms, including signaling pathways, involved in P2X7R's regulation of these factors.
Main Methods:
- THP-1 human monocytic cells were treated with A-438079, a P2X7R inhibitor, followed by PMA stimulation.
- Expression levels of MMP-9, EMMPRIN, and the phosphorylation status of MAPK signaling components (JNK, p38, ERK) were analyzed.
- Activation of 5'-AMP-activated protein kinase (AMPK) was assessed during monocyte differentiation into macrophages.
Main Results:
- A-438079 treatment significantly decreased MMP-9 and EMMPRIN expression in PMA-induced macrophages.
- P2X7R inhibition attenuated the activation of MAPK signaling pathways (JNK, p38, ERK).
- PMA induced AMPK activation during monocyte differentiation, which was reversed by A-438079 via P2X7R inhibition.
Conclusions:
- P2X7R plays a regulatory role in EMMPRIN and MMP-9 expression in macrophages.
- Inhibiting P2X7R suppresses the AMPK/MAPK signaling pathway, downregulating EMMPRIN and MMP-9.
- Targeting P2X7R presents a potential therapeutic strategy for mitigating atherosclerosis progression.
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